{"id":1685,"date":"2018-03-19T09:20:19","date_gmt":"2018-03-19T13:20:19","guid":{"rendered":"https:\/\/sciencescosmaincms.cm.ucf.edu\/class\/?page_id=1685"},"modified":"2019-04-04T14:15:19","modified_gmt":"2019-04-04T18:15:19","slug":"publications","status":"publish","type":"page","link":"https:\/\/sciences.ucf.edu\/class\/publications\/","title":{"rendered":"Publications"},"content":{"rendered":"<p><strong>Jump to section:<\/strong><br \/>\n<a href=\"#2014\">2014<\/a><br \/>\n<a href=\"#2015\">2015<\/a><br \/>\n<a href=\"#2016\">2016<\/a><br \/>\n<a href=\"#2017\">2017<\/a><br \/>\n<a href=\"#2018\">2018<\/a><\/p>\n<h2><strong>2014:<\/strong><\/h2>\n<p>Alexander, C.M.O\u2019D., G.D. Cody, Y. Kebukawa, R. Bowden, M.L. Fogel, A.L.D. Kilcoyne, L.R. Nittler, and C.D.K. Herd (2014). Elemental, Isotopic and Structural Changes in Tagish Lake Insoluble Organic Matter Produced by Parent Body Processes. Meteoritics and Planetary Science, v. 49, 503-525.<\/p>\n<p>Blinova, A., C.D.K. Herd, and M.J.M. Duke (2014). Testing Variations within the Tagish Lake Meteorite \u2013 II: Whole-Rock Chemistry of Pristine Samples. Meteoritics and Planetary Science, v. 49, 1100-1118.<\/p>\n<p>Blinova, A., T.J. Zega, C.D.K. Herd, and R.M. Stroud (2014). Testing Variations within the Tagish Lake Meteorite \u2013 I: Mineralogy and Petrology of Pristine Samples. Meteoritics and Planetary Science, v. 49, 473-502<\/p>\n<p>Bolin, B., Jedicke, R., Granvik, M., Brown, P., Howell, E., Nolan, M.C., Jenniskens, P., Chyba, M., Patterson, G., Wainscoat, R., (2014) Detecting Earth\u2019s Temporarily-Captured Natural Satellites &#8211; Minimoons. Icarus 241, 280\u2013297.<\/p>\n<p>Bridgestock, L. J.; Williams, H.; Rehk\u00e4mper, M.; Larner, F.; Giscard, M. D.; Hammond, S.; Coles, B.; Andreasen, R.; Wood, B. J.; Theis, K. J.; Smith, C. L.; Benedix, G. K.; Sch\u00f6nb\u00e4chler, M.Unlocking the zinc isotope systematics of iron meteorites. Earth and Planetary Science Letters, Volume 400, p. 153-164<\/p>\n<p>Britt D.T., Consolmagno G.J., and Lebofsky L.A. (2014) Asteroids.\u00a0 In: <em>The Encyclopedia of the Solar System<\/em>. T. Spohn Ed., Academic Press, Third Edition, Section 6, Chapter 26.<\/p>\n<p>Cellino, A., Bagnulo, S., Tanga, P., Novakovi, B., Delbo, M. 2014. A successful search for hidden Barbarians in the Watsonia asteroid family.\\ Monthly Notices of the Royal Astronomical Society 439, L75-L79<\/p>\n<p>Delbo, M., Libourel, G., Wilkerson, J., Murdoch, N., Michel, P., Ramesh, K.~T., Ganino, C., Verati, C., Marchi, S. 2014. Thermal fatigue as the origin of regolith on small asteroids.\\ Nature 508, 233-236.<\/p>\n<p>E. A. Kramer et al., 2014. A dynamical analysis of the dust tail of Comet C\/1995 O1 (Hale-Bopp) at high heliocentric distances. Icarus 236, 136-145.<\/p>\n<p>Hilts, R.W., C.D.K. Herd, D.N. Simkus, and G.F. Slater (2014). Soluble Organic Compounds in the Tagish Lake Meteorite. Meteoritics and Planetary Science, v. 49, 526-549.<\/p>\n<p>Jenniskens, P., Rubin, A.E., Yin, Q.-Z., Sears, D.W.G., Sandford, S. a., Zolensky, M.E., Krot, A.N., Blair, L., Kane, D., Utas, J., Verish, R., Friedrich, J.M., Wimpenny, J., Eppich, G.R., Ziegler, K., Verosub, K.L., Rowland, D.J., Albers, J., Gural, P.S., Grigsby, B., Fries, M.D., Matson, R., Johnston, M., Silber, E., Brown, P., Yamakawa, A., Sanborn, M.E., Laubenstein, M., Welten, K.C., Nishiizumi, K., Meier, M.M.M., Busemann, H., Clay, P., Caffee, M.W., Schmitt-Kopplin, P., Hertkorn, N., Glavin, D.P., Callahan, M.P., Dworkin, J.P., Wu, Q., Zare, R.N., Grady, M., Verchovsky, S., Emel\u2019Yanenko, V., Naroenkov, S., Clark, D.L., Girten, B., Worden, P.S., (2014) Fall, recovery, and characterization of the Novato L6 chondrite breccia. Meteorit. Planet. Sci. 49, 1388\u20131425. (**This paper was also the feature cover for this MAPS issue**)<\/p>\n<p>J. P. Emery et al., 2014. Thermal infrared observations and thermophysical characterization of OSIRIS-REx target asteroid (101955) Bennu. Icarus 234, 17-35.<\/p>\n<p>J.S. Bruzzone, P. Brown, R.J. Weryk, D.K. Wong and M.D. Campbell-Brown (2014) A decadal survey of the Daytime Arietid meteor shower using the Canadian Meteor Orbit Radar, MNRAS, 446, 1625-1640.<\/p>\n<p>Kohout T., Cuda J, Filip J, Britt D.,l and 8 others (2014) Space weathering simulations through controlled growth of iron nanoparticles on olivine. Icarus 237, 75-83.<\/p>\n<p>Kohout T., Havrila K., Toth J., Hus\u00e1rik M., Gritsevich M., Britt D.,l and 18 others (2014) Density, porosity and magnetic susceptibility of the Ko\u0161ice shower and homogeneity of its parent body. Planetary and Space Science, 93-94, 96-100.<\/p>\n<p>Lane, John E., Takis Kasparis, Philip T. Metzger, and W. Linwood Jones, \u201cIn Situ Disdrometer Calibration Using Multiple DSD Moments,\u201d Acta Geophysica 62 (6), 1450-1477 (2014).<\/p>\n<p>Lauretta, D.~S., and 28 colleagues 2014. The OSIRIS-REx target asteroid (101955) Bennu: Constraints on its physical, geological, and dynamical nature from astronomical observations. Meteoritics and Planetary Science 50, 834-849.<\/p>\n<p>M.D. Campbell-Brown and P. Brown (2014) A 13-year radar study of the \u03b7-Aquariid meteor shower, MNRAS, 446, 3669-3675<\/p>\n<p>Metzger, Philip T., \u201cPlume Interactions with Asteroid Regolith during Proximity Operations,\u201d NASA report to Asteroid Return Mission (ARM) Alternative Study (October 2014).<\/p>\n<p>Metzger, Philip T., \u201cEstimation of Regolith Backscatter during OSIRIS-REx Sample Capture,\u201d NASA report to OSIRIS-REx Project (2014).<\/p>\n<p>Mommert, M., and 10 colleagues 2014.\\ The Discovery of Cometary Activity in Near-Earth Asteroid (3552) Don Quixote.\\ The Astrophysical Journal 781, 25.<\/p>\n<p>Moreno, F., Licandro, J., {\\&#8217;A}lvarez-Iglesias, C., Cabrera-Lavers, A., Pozuelos, F.\\ 2014.\\ Intermittent Dust Mass Loss from Activated Asteroid P\/2013 P5 (PANSTARRS).\\ The Astrophysical Journal 781, 118.<\/p>\n<p>Murchie S., Britt D., and Pieters C. (2014) The Case for Phobos Sample Return. In Phobos J. Oberst Ed., Planetary and Space Science 102, 176-182.<\/p>\n<p>Pieters C. M., Murchie S., Thomas N., and Britt D. (2014) Composition of Surface Materials on the Moons of Mars.\u00a0 In Phobos J. Oberst Ed., Planetary and Space Science 102, 144-151.<\/p>\n<p>Pokorn\u00fd, P., Vokrouhlick\u00fd, D., Nesvorn\u00fd, D., Campbell-Brown, M.D., Brown, P., (2014) Dynamical Model for the Toroidal Sporadic Meteors. Astrophys. J. 789, 25.<\/p>\n<p>Silber, E. A., Brown, P.G., (2014) Optical observations of meteors generating infrasound\u2014I: Acoustic signal identification and phenomenology. J. Atmos. Solar-Terrestrial Phys. 119, 116\u2013128.<\/p>\n<p>Silber, E. A., Brown, P.G., (2014) Optical observations of meteors generating infrasound\u2014II: Weak shock Model Theory and Validation, accepted JGR, Jan 7, 2014, 120, 413-428.<\/p>\n<p>Stober, G., Matthias, V., Brown, P., Chau, J.L., (2014) Neutral density variation from specular meteor echo observations spanning one solar cycle. Geophys. Res. Lett. 41, 6919\u20136925.<\/p>\n<p>Thomas, C.~A., Emery, J.~P., Trilling, D.~E., Delbo, M., Hora, J.~L., Mueller, M.\\ 2014.\\ Physical characterization of Warm Spitzer-observed near-Earth objects.\\ Icarus 228, 217-246.<\/p>\n<p>Ye Q., Wiegert, P.A., Brown P. G., Campbell-Brown M. D., and Weryk R. J. (2014) The unexpected 2012 Draconid Meteor Storm. Monthly Notices of the Royal Astronomical Society, 437, 3812-3823<\/p>\n<p>&nbsp;<\/p>\n<h2><strong>2015:<\/strong><\/h2>\n<p>Abedin, A., Spurn\u00fd, P., Wiegert, P., Pokorn\u00fd, P., Borovi\u010dka, J., Brown, P., (2015). On the age and formation mechanism of the core of the Quadrantid meteoroid stream. Icarus 261, 100\u2013117. doi:10.1016\/j.icarus.2015.08.016<\/p>\n<p>A. H. Quadery, S. Pacheco, A. Au, N. Rizzacasa, J. Nichols, T. Le, C. Glasscock, and P.K. Schelling, \u201cAtomic-scale simulation of radiation damage in olivine and orthopyroxene,\u201d J. Geophys. Res.: Planets 120, 643-661 (2015)<\/p>\n<p>Boslough, M.B.E., Brown, P., Harris, A.W. (2015) Updated Population and Risk Assessment for Airbursts from Near-Earth Objects (NEOs), IEEE Aerospace Conference, Big Sky Montana.(2015 Winner of M. Charles Fogg best paper award at IEEE Aerospace Conference).<\/p>\n<p>Brown P., Wiegert P., Clark D., and Tagliaferri E. (2015). Orbital and Physical Characteristics of Meter-scale Impactors from Airburst Observations. Icarus, 266: 96\u2013111.<\/p>\n<p>Chesley S. R., Farnocchia D., Brown P. G., and Chodas P. W. 2015. Orbit Estimation for Late Warning Asteroid Impacts: The Case of 2014 AA. In IEEE Aerospace Conference. 8 pp,\u00a0 Big Sky Montana<\/p>\n<p>D.J. Scheeres. 2015. \u201cLandslides and Mass Shedding on Spinning Spheroidal Asteroids,\u201d Icarus 247: 1-17.<\/p>\n<p>Espy Kehoe A. J., Kehoe T. J. J., Colwell J. E., and Dermott S. F. (2015) Signatures of recent asteroid disruptions in the formation and evolution of solar system dust bands. Astrophysics J., 811, 66. SSERVI-2014-288.<\/p>\n<p>Groussin, O., Licandro, J., Helbert, J. et al. Exp Astron (2016) 41: 95. https:\/\/doi.org\/10.1007\/s10686-015-9475-9.<\/p>\n<p>H. Urrutxua, D.J. Scheeres, C. Bombardelli, J.L. Gonzalo and J. Pelaez. 2015. \u201cTemporarily Captured Asteroids as a Pathway to Affordable Asteroid Retrieval Missions,\u201d Journal of Guidance, Control and Dynamics 38(11): 2132-2145.<\/p>\n<p>Li, Y., A. Dove, J. S. Curtis, and J. E. Colwell 2015. 3D DEM Simulations and Experiments Exploring Low-Velocity Projectile Impacts into a Granular Bed. Powder Tech.\u00a0 288, 303-314.<\/p>\n<p>Lorenzi et al.(2015), Rotationally resolved spectroscopy of dwarf planet (136472) Makemake.\\ Astronomy and Astrophysics 577, A86.<\/p>\n<p>M.D. Campbell-Brown and P. Brown (2015) A 13-year radar study of the \u03b7-Aquariid meteor shower, MNRAS, 446, 3669-3675<\/p>\n<p>M. Hirabayashi, P. S \u0301anchez and D.J. Scheeres. 2015. \u201cInternal Structure of Asteroids Having Surface Shedding due to Rotational Instability,\u201d The Astrophysical Journal 808: 63.<\/p>\n<p>M. Hirabayashi and D.J. Scheeres. 2015. \u201cStress and Failure Analysis of Rapidly Rotating Asteroid (29075) 1950 DA,\u201d Astrophysical Journal Letters 798:L8.<\/p>\n<p>Moorhead, A., Brown, P.G., Spurn\u00fd, P, Cooke, W.J., Shrbeny, L. (2015) The 2014 KCG meteor outburst: clues to a parent body, Astron. Journal, 150, 13pp,<\/p>\n<p>Newman, J.D. and C.D.K. Herd (2015) Mineralogy, Petrology and Distribution of Meteorites at the Whitecourt Crater, Alberta, Canada. Meteoritics and Planetary Science, v. 50, 305-317.<\/p>\n<p>Opeil C. P., Consolmagno G. J., Macke R., Lashley J. C., Hogan T., Wilson S., Britt D. T. (2015) Asteroid Population Characterization: Low-Temperature Thermal Conductivity and Heat Capacity Measurements of Ordinary and Carbonaceous Chondrites. 2015 NASA Exploration Science Forum, Moffett Field CA, July 21-23 2015. (Poster)<\/p>\n<p>Ortiz et al.(2015)]{2015A&amp;A&#8230;576A..18O} Ortiz, J.~L., Duffard, R., Pinilla-Alonso, N., Alvarez-Candal, A., Santos-Sanz, P., Morales, N., Fern{\\&#8217;a}ndez-Valenzuela, E., Licandro, J., Campo Bagatin, A., Thirouin, A.\\ 2015.\\ Possible ring material around centaur (2060) Chiron.\\ Astronomy and Astrophysics 576, A18.<\/p>\n<p>Pozuelos et al.(2015)]{2015ApJ&#8230;806..102P} Pozuelos, F.~J., Cabrera-Lavers, A., Licandro, J., Moreno, F.\\ 2015.\\ On the Dust Environment of Main-Belt Comet 313P\/Gibbs.\\ The Astrophysical Journal 806, 102.<\/p>\n<p>Ruzicka, A., J. Grossman, A. Bouvier, C.D.K. Herd, and C.B. Agee (2015) The Meteoritical Bulletin, No. 102. Meteoritics and Planetary Science, v. 50, 1662.<\/p>\n<p>Ruzicka, A., J. Grossman, A. Bouvier, C.D.K. Herd, and C.B. Agee (2015) The Meteoritical Bulletin, No. 101. Meteoritics and Planetary Science, v. 50, 1661.<\/p>\n<p>Schambeau, C. A., et al. 2015. \u201cA new analysis of Spitzer observations of Comet 29P\/Schwassmann-Wachmann 1.\u201d Icarus 260, 60-72.<\/p>\n<p>Scheirich et al.(2015), The binary near-Earth Asteroid (175706) 1996 FG$_{3}$ &#8211; An observational constraint on its orbital evolution.\\ Icarus 245, 56-63.<\/p>\n<p>Serra-Ricart and Licandro(2015)]{2015ApJ&#8230;814&#8230;49S} Serra-Ricart, M., Licandro, J.\\ 2015.\\ The Rotation Period of C\/2014 Q2 (Lovejoy).\\ The Astrophysical Journal 814, 49.<\/p>\n<p>Silber, E. A., Brown, P.G., Silber, E.A., Brown, P.G., Krzeminski, Z., (2015). Optical observations of meteors generating infrasound: Weak shock theory and validation. J. Geophys. Res. Planets 413\u2013428. doi:10.1002\/2014JE004680.<\/p>\n<p>Vilas, F., and Hendrix, A. R., \u201cThe UV\/Blue Effects of Space Weathering Manifested in S-Complex Asteroids I: Quantifying Change with Asteroid Age\u201d, Astron. J. 150, 64 (2015). doi:10.1088\/0004-6256\/150\/2\/64<\/p>\n<p>Ye\u00a0 Q.-Z., Brown P. G., Bell C., Gao) X., Ma\u0161ek M., and Hui\u00a0 M.-T. 2015. Bangs and Meteors From the Quiet Comet 15P\/Finlay. The Astrophysical Journal 814: 9.<\/p>\n<p>Ye, Q.-Z., Hui, M.-T., Brown, P.G., Campbell-Brown, M.D., Pokorn\u00fd, P., Wiegert, P. A., Gao, X., (2015). When Comets Get Old: A Synthesis of Comet and Meteor Observations of the Low Activity Comet 209P\/LINEAR. Icarus, 118, 273-276. doi:10.1016\/j.icarus.2015.06.023.<\/p>\n<p>&nbsp;<\/p>\n<h2><strong>2016:<\/strong><\/h2>\n<p>Abedin, A., Wiegert, P., Pokorn, P., 2016. The age and the parent of the daytime Arietids meteor shower. Icarus 281, 417\u2013443. doi:10.1016\/j.icarus.2016.08.017<\/p>\n<p>Al\u00ed-Lagoa, V., Licandro, J., Gil-Hutton, R., Ca\u00f1ada-Assandri, M., Delbo&#8217;, M., de Le\u00f3n, J., Campins, H., Pinilla-Alonso, N., Kelley, M. S. P. &amp; Hanu\u0161, J. (2016) Differences between the Pallas collisional family and similarly sized B-type asteroids. Astronomy and Astrophysics, 591.<\/p>\n<p>Boldrin, L. A. G., Scheeres, D. J. &amp; Winter, O. C. (2016) Dynamics of rotationally fissioned asteroids: non-planar case. Monthly Notices of the Royal Astronomical Society, 461, 3982\u20133992.<\/p>\n<p>Borovi\u010dka, J., Shrben\u00fd, L., Kalenda, P., Loskutov, N., Brown, P.G., Spurn\u00fd, P., Cooke, W., Blaauw, R., Moser, D.E., Kingery, A., 2016. A catalog of video records of the 2013 Chelyabinsk superbolide. Astron. Astrophys. 585, A90. doi:10.1051\/0004-6361\/201526680<\/p>\n<p>Brown, P., Wiegert, P., Clark, D. &amp; Tagliaferri, E. (2016) Orbital and physical characteristics of meter-scale impactors from airburst observations. Icarus, 266, 96\u2013111.<\/p>\n<p>Clark, D.L., Spurn\u00fd, P., Wiegert, P., Brown, P., Borovi\u010dka, J., Tagliaferri, E., Shrben\u00fd, L., 2016. Impact Detections of Temporarily Captured Natural Satellites. Astron. J. 151, 135. doi:10.3847\/0004-6256\/151\/6\/135<\/p>\n<p>Crowell, J. L., et al. 2016. \u201cRadar and Lightcurve Shape Model of Near-Earth Asteroid (1627) Ivar.\u201d Icarus, v291, 247-267, DOI 10.1016\/j.icarus.2016.11.008.<\/p>\n<p>Day, J. M. D., Qiu, L., Ash, R. D., McDonough, W. F., Teng, F.-Z., Rudnick, R. L. &amp; Taylor, L. A. (2016) Evidence for high-temperature fractionation of lithium isotopes during differentiation of the Moon. Meteoritics and Planetary Science, 51, 1046\u20131062.<\/p>\n<p>Deienno, R., Gomes, R. S., Walsh, K. J., Morbidelli, A. &amp; Nesvorn\u00fd, D. (2016) Is the Grand Tack model compatible with the orbital distribution of main belt asteroids? Icarus, 272, 114\u2013124.<\/p>\n<p>de Le\u00f3n, J., Pinilla-Alonso, N., Delbo, M., Campins, H., Cabrera-Lavers, A., Tanga, P., Cellino, A., Bendjoya, P., Gayon-Markt, J., Licandro, J., Lorenzi, V., Morate, D., Walsh, K. J., DeMeo, F., Landsman, Z. &amp; Al\u00ed-Lagoa, V. (2016) Visible spectroscopy of the Polana-Eulalia family complex: Spectral homogeneity. Icarus, 266, 57\u201375.<\/p>\n<p>Domingue, D. L., Vilas, F., Choo, T., Stockstill-Cahill, K. R., Cahill, J. T. S. &amp; Hendrix, A. R. (2016) Regional spectrophotometric properties of 951 Gaspra. Icarus, 280, 340\u2013358.<\/p>\n<p>Dyl, K. A., Benedix, G. K., Bland, P. A., Friedrich, J. M., Spurn\u00fd, P., Towner, M. C., O&#8217;Keefe, M. C., Howard, K., Greenwood, R., Macke, R. J., Britt, D. T., Halfpenny, A., Thostenson, J. O., Rudolph, R. A., Rivers, M. L. &amp; Bevan, A. W. R. (2016) Characterization of Mason Gully (H5): The second recovered fall from the Desert Fireball Network. Meteoritics and Planetary Science, 51, 596\u2013613.<\/p>\n<p>Ehlmann, B.L., F.S. Anderson, J. Andrews-Hanna, J. Carter, D. C. Catling, P.R. Christensen, B.A. Cohen, C.D. Dressing, C.S. Edwards, L.T. Elkins-Tanton, K.A. Farley, C.I. Fassett, W.W. Fischer, A.A. Fraeman, M. P. Golombek, V.E. Hamilton, A.G. Hayes, C. D. K. Herd, B. Horgan, R. Hu, B.M. Jakosky, J.R. Johnson, J.F. Kasting, L. Kerber, K.M. Kinch, E.S. Kite, H.A. Knutson, J. I. Lunine, P. R. Mahaffy, N. Mangold, F.M. McCubbin, J.F. Mustard, P.B. Niles, C. Quantin-Nataf, M. S. Rice, K.M. Stack, D. J.Stevenson, S.T. Stewart, M. J. Toplis, T. Usui, B.P. Weiss, S.C. Werner, R.D. Wordsworth, J.J. Wray, R.A. Yingst, Y.L. Yung, K.J. Zahnle. The Sustainability of Habitability on Terrestrial Planets: Insights, Questions, and Needed Measurements from Mars for Understanding the Evolution of Earth-like Worlds. Journal of Geophysical Research: Planets, 121(10), 1927-1961, doi: 10.1002\/2016JE005134. (25th Anniversary Special Issue)<\/p>\n<p>Espy Kehoe A. J., Kehoe T. J. J., Colwell J. E. (2016) Understanding asteroid regolith properties using solar system dust bands. Accepted in ASCE Earth &amp; Space Conf. Procs.<\/p>\n<p>Farnocchia, D., Chesley, S. R., Brown, P. G. &amp; Chodas, P. W. (2016) The trajectory and atmospheric impact of asteroid 2014 AA. Icarus, 274, 327\u2013333.<\/p>\n<p>Fornasier, S., Lantz, C., Perna, D., Campins, H., Barucci, M. A. &amp; Nesvorny, D. (2016) Spectral variability on primitive asteroids of the Themis and Beagle families: Space weathering effects or parent body heterogeneity? Icarus, 269, 1\u201314.<\/p>\n<p>Gabriel, T. S. J. &amp; Scheeres, D. J. (2016) Energy dissipation end states of the sphere restricted planar three-body problem with collisional interaction. Monthly Notices of the Royal Astronomical Society, 463, 794\u2013801.<\/p>\n<p>Golubov, O. &amp; Scheeres, D. J. (2016) Equilibrium Rotation States of Doubly Synchronous Binary Asteroids. The Astrophysical Journal Letters, 833.<\/p>\n<p>Golubov, O., Kravets, Y., Krugly, Y. N. &amp; Scheeres, D. J. (2016) Physical models for the normal YORP and diurnal Yarkovsky effects. Monthly Notices of the Royal Astronomical Society, 458, 3977\u20133989.<\/p>\n<p>Groussin, O., Licandro, J., Helbert, J., Reynaud, J. L., Levacher, P., Reyes Garc\u00eda-Talavera, M., Al\u00ed-Lagoa, V., Blanc, P. E., Brageot, E., Davidsson, B., Delb\u00f3, M., Deleuze, M., Delsanti, A., Diaz Garcia, J. J., Dohlen, K., Ferrand, D., Green, S. F., Jorda, L., Joven \u00c1lvarez, E., Knollenberg, J., K\u00fchrt, E., Lamy, P., Lellouch, E., Le Merrer, J., Marty, B., Mas, G., Rossin, C., Rozitis, B., Sunshine, J., Vernazza, P. &amp; Vives, S. 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The Veritas and Themis asteroid families: 5-14 \u03bcm spectra with the Spitzer Space Telescope. Icarus 269, 62L (2016)<\/p>\n<p>Z. Landsman, J. Emery, H. Campins, J. Hanus, L. Lim, D. Cruikshank, Asteroid (16) Psyche: evidence for a silicate regolith from Spitzer Space Telescope spectroscopy. Submitted to Icarus (March 2017)<\/p>\n<p>&nbsp;<\/p>\n<h2><strong>2018:<\/strong><\/h2>\n<p>A. Dove, M. Horanyi, X. Wang, and S. Robertson. (2018) Laboratory investigation of the effect of surface roughness on photoemission from surfaces in space, Planetary and Space Science, 156, 92-95, doi:10.1016\/j.pss.2017.10.014<\/p>\n<div dir=\"ltr\">\n<p>Brisset, J., J. E. Colwell, A. Dove, S. Abukhalil, C. Cox, N. Mohammed 2018. Regolith Behavior under Asteroid-Level Gravity Conditions: Low-Velocity Impact Experiments. Prog. Earth Plan. Sci., 5, #73, doi:10.1186\/s40645-018-02220-5.<\/p>\n<p>B. Bolin et al., including Y. R. Fernandez, 2018. APO time resolved color photometry of highly-elongated interstellar object 1I\/`Oumuamua. Astrophys. J. Lett. 852, L2.<\/p>\n<p>Borovi\u010dka J., Macke R. J., Campbell-Brown M. D., Levasseur-Regourd A.-C., Reitmeijer F. J. M., and Kohout T., Physical and chemical properties of meteoroids. In Meteoroids: Sources of Meteors on Earth and Beyond, edited by G. O. Ryabova, D. J. Asher, and M. Campbell-Brown. Cambridge: Cambridge University Press. Accepted for Publication November 2018<\/p>\n<p>Cannon K.M. Britt D.T., Covey S.D., Smith T.M., and Fritsche R. (2018) Mars Global Simulant MGS-1: Developing a high-fidelity mineralogy based simulant for basaltic Martian soil. Icarus 317, 470-478.<\/p>\n<p>C. Magri et al., including Y. R. Fernandez, 2018. SHERMAN &#8211; A shape-based thermophysical model. I. Model description and validation. Icarus 303, 203-219.<\/p>\n<\/div>\n<p>David\u00a0 Morate, Julia\u00a0 de Le\u00f3n, M\u00e1rio\u00a0 De Pr\u00e1, Javier\u00a0 Licandro, Antonio\u00a0 Cabrera-Lavers, Humberto\u00a0 Campins, Noem\u00ed\u00a0 Pinilla-Alonso, \u201cVisible spectroscopy of the Sulamitis and Clarissa primitive families: a possible link to Erigone and Polana\u201d A&amp;A 610 A25 (2018) DOI: 10.1051\/0004-6361\/201731407<\/p>\n<p>Demasi, M., Britt D.T., Kring D.A., and Swindle T.D. (2018) What do Meteorite Falls Tell Us about the Strengths of Asteroid Boulders? Meteoritics and Planetary Science. In Press<\/p>\n<div dir=\"ltr\">\n<p>D. E. Trilling et al., including Y. R. Fernandez, 2018. Spitzer observations if interstellar object 1I\/`Oumuamua. Astron. J. 156, 261.<\/p>\n<p>E. Howell et al., including Y. R. Fernandez, 2018. SHERMAN &#8211; A shape-based thermophysical model. II. Application to 8567 (1996 HW1). Icarus 303, 220-233.<\/p>\n<p>Fries, M., Abell, P., Brisset, J., Britt, D., Colwell, J., Dove, A., Durda, D., Graham, L., Hartzell, C., Hrovat, K. and John, K. (2018). \u201cThe Strata-1 experiment on small body regolith segregation\u201d. Acta Astronautica, 142, pp.87-94.<\/p>\n<p>Fries, M., J. E. Colwell, L. Graham, S. Love, K. John, V. Rodriguez, A. Whizin, P. Abell, D. Britt, J. Brisset, C. Hartzell, K. Hrovat, M. Leonard, J. Morgan, J. Poppin, A. Dove, D. Durda, D. Kerrer, D. P. Sanchez, D. Scheeres 2018. The Strata-1 Experiment on Small Body Regolith Segregation. Acta Astronautica, 142, 87-94, doi:10.1016\/j.actastro.2017.10.025.<\/p>\n<p>Flynn G. J., Consolmagno G. J., Brown P., and Macke R. J. (2018) Physical Properties of the Stone Meteorites: Implications for the Properties of their Parent Bodies. (Review paper) Chemie der Erde. 78:269-298.<\/p>\n<p>Flynn G. J., Durda D. D., Patmore E. B., Jack S. J., Molesky M. J., May B. A., Congram, S. N., Strait M. M., and Macke R. J. (2018) Hypervelocity Cratering and Disruption of the Northwest Africa 869 Ordinary Chondrite Meteorite: Implications for Crater Production, Catastrophic Disruption, Momentum Transfer and Dust Production on Asteroids. Planetary and Space Science 164:91-105<\/p>\n<p>Gilmour, C.M. and C.D.K. Herd. In Situ Analysis of Platinum Group Elements in Equilibrated Ordinary Chondrite Kamacite and Taenite. Meteoritics and Planetary Science, Submitted July 10, 2018.<\/p>\n<p>Glotch, T.D., Edwards, C.S., Yesiltas, M., Shirley, K.A., McDougall, D., Kling, A.M., Bandfield, J and C.D.K. Herd. MGS-TES spectra suggest a basaltic component in the regolith of Phobos. JGR-Planets,\u00a0<a title=\"\" href=\"https:\/\/nam02.safelinks.protection.outlook.com\/?url=http%3A%2F%2Fdoi.org%2F10.1029%2F2018JE005647&amp;data=02%7C01%7Cjessica.woodward%40ucf.edu%7C8edb341c6be64bbec3fb08d6abdcc23d%7Cbb932f15ef3842ba91fcf3c59d5dd1f1%7C0%7C0%7C636885361979535704&amp;sdata=eHx4HJFLQWIG9xAw7RPImU9Pk9GamMhURC9Q5vEPgc8%3D&amp;reserved=0\" target=\"_blank\" rel=\"noopener noreferrer\">doi.org\/10.1029\/2018JE005647<\/a>.<\/p>\n<p>Hill, P.J.A., G.R. Osinski, N.R. Banerjee, R.L. Korotev, S.J. Nasir, and C.D.K. Herd. Petrography and geochemistry of lunar meteorites Dhofar 1673, 1983 and 1984. Meteoritics and Planetary Science, Accepted Sept 23, 2018. Doi: 10.1111\/maps.13207<\/p>\n<p>Metzger, Philip T., and Daniel T. Britt, \u201cModel for Asteroid Regolith to Guide Simulant Development,\u201d submitted to Icarus (2018).<\/p>\n<p>R. J. Macke, C. P. Opeil, G. J. Consolmagno, Heat capacities of ordinary chondrite falls below 300 K, Submitted for publication to Meteoritics and Planetary Sciences on 16 November 2018.<\/p>\n<p>Runyon C., Hurd D., Minafra J. (2018) Abre tus Sentidos a los Eclipses: Sud America. [Open your senses to Eclipses: South America]. In press.<\/p>\n<p>Runyon C., Hurd D., Minafra J., (2018) Getting a Feel for the Moon: Apollo 50th Commemorative tactile guide.\u00a0\u00a0In press.<\/p>\n<p>Szalay J.R., Poppe A. R., Agarwal J., Britt D., Belskaya I., Horanyi M., Nakamura T., Sachse M., and Spahn F. (2018) Dust Phenomena Relating to Airless Bodies.\u00a0\u00a0Space Science Reviews-214:98.<\/p>\n<p>Simkus, D.N., J.C. Aponte, R.W. Hilts, J.E. Elsila, and C.D.K. Herd. Compound-Specific Carbon Isotope Compositions of Aldehydes and Ketones in the Murchison Meteorite. Meteoritics and Planetary Science, Accepted August 23, 2018, published October 14, 2018. Doi: 10.1111\/maps.13202.<\/p>\n<p>Quirico, E., Bonal, L., Beck, P., Alexander, C.M.O\u2019D., Yabuta, H., Nakamura, T., Nakato, A., Flandinet, L., Montagnac, G., Schmitt-Kopplin, P. and C.D.K. Herd (2018) Prevalence and nature of heating processes in CM and C2-ungrouped chondrites as revealed by Insoluble Organic matter. Geochimica et Cosmochimica Acta, 241:17-37.<\/p>\n<p>Zacny, Kris, Edward B. Bierhaus, Daniel T. Britt, Benton Clark, Christine M. Hartzell, Leslie Gertsch, Anton V. Kulchitsky, Anton V., Johnson, Jerome. B., Metzger, Phil, Reeves, David M. and Sanchez, Paul. \u201cGeotechnical Properties of Asteroids Affecting Surface Operations, Mining, and In Situ Resource Utilization Activities.\u201d In Primitive Meteorites and Asteroids, pp. 439-476. Elsevier, 2018<\/p>\n<\/div>\n<h2><strong>2019:<\/strong><\/h2>\n<p>Chris J. Bennett, Micah Schaible, Brant M. Jones, Thomas M. Orlando \u201cAbsolute Yields of Ions Released during Electron-Stimulated Desorption of Amorphous Solid Water (ASW) Ice: Implications to Mercury, Icy Satellites, Planetary Rings, and Interstellar Grains\u201d. (In Prep)<\/p>\n<div dir=\"ltr\">\n<p>Gilmour, C.M., C.D.K. Herd, and P. Beck. Water Abundance in the Tagish Lake Meteorite from TGA and IR Spectroscopy: Evaluation of Aqueous Alteration. Meteoritics and Planetary Science. (In Prep)<\/p>\n<p>Jarmak, S., J. Brisset, J. Colwell, A. Dove, D. Maukonen, S. A. Rawashdeh, J. Blum, L. Roe 2019. CubeSat Particle Aggregation Collision Experiment (Q-PACE): Design of a 3U CubeSat mission to investigate planetesimal formation. Acta Astronautica, 155, 131-142, doi: 10.1016\/j.actastro.2018.11.029.<\/p>\n<p>Metzger P.T., Britt D.T., Covey S.D., Schultz C., Cannon K.M., Grossman K.D., Mantovani J.G., and Mueller R.P. (2019) Measuring the fidelity of asteroid regolith and cobble simulants. Icarus 321, 632-646.<\/p>\n<p>Metzger, Philip T., Kris Zacny, and Phillip Morrison, \u201cDrilling and Thermal Extraction of Water Ice from Lunar Regolith in Axi-Symmetric Crank-Nicholson Modeling,\u201d manuscript in preparation.<\/p>\n<p>Lepaulard C., Gattacceca J., Uehara M., Rochette P., Quesnel Y., Macke R. J., Kiefer W. A Survey of the Natural Remanent Magnetization and Magnetic Susceptibility of Apollo Whole Rocks. Submitted to Physics of the Earth and Planetary Interiors<\/p>\n<p>Yuan Hung Lo, Jihan Zhou, Chen-Ting Liao, Arjun Rana, Charlie Bevis, Guan Gui, Bjoern Enders, Kevin, Cannon, David Shapiro, Chris Bennett, Henry Kapteyn, Margaret Murnane, Roger Falcone, Jianwei Miao, \u201cMultimodal x-ray and electron microscopy of the Allende meteorite\u201d (In Prep)<\/p>\n<\/div>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p><strong>\u00a0<\/strong><\/p>\n","protected":false},"excerpt":{"rendered":"<p>Jump to section: 2014 2015 2016 2017 2018 2014: Alexander, C.M.O\u2019D., G.D. Cody, Y. Kebukawa, R. Bowden, M.L. Fogel, A.L.D. Kilcoyne, L.R. Nittler, and C.D.K. Herd (2014). Elemental, Isotopic and Structural Changes in Tagish Lake Insoluble Organic Matter Produced by Parent Body Processes. Meteoritics and Planetary Science, v. 49, 503-525. Blinova, A., C.D.K. Herd, and [&hellip;]<\/p>\n","protected":false},"author":67,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-1685","page","type-page","status-publish","hentry"],"_links":{"self":[{"href":"https:\/\/sciences.ucf.edu\/class\/wp-json\/wp\/v2\/pages\/1685","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/sciences.ucf.edu\/class\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/sciences.ucf.edu\/class\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/sciences.ucf.edu\/class\/wp-json\/wp\/v2\/users\/67"}],"replies":[{"embeddable":true,"href":"https:\/\/sciences.ucf.edu\/class\/wp-json\/wp\/v2\/comments?post=1685"}],"version-history":[{"count":0,"href":"https:\/\/sciences.ucf.edu\/class\/wp-json\/wp\/v2\/pages\/1685\/revisions"}],"wp:attachment":[{"href":"https:\/\/sciences.ucf.edu\/class\/wp-json\/wp\/v2\/media?parent=1685"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}