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16cm論破!!

閲覧数 : 769
JA 255 ボン太くん 2,024,873 / 2,811,753
  • Miyamoto, H. et al. Regolith Migration and Sorting on Asteroid Itokawa.
  • The Journal of Space Technology and Scence, Vol. 22, No. 1, 2006 Spring.
    Special Issue : HAYABUSA ; Asteroid ITOKAWA Sample Return
    • Hitoshi KUNINAKA, Kazutaka NISHIYAMA, Ikko FUNAKI, Tetsuya YAMADA, Yukio SHIMIZU and Jun"ichiro KAWAGUCHI, Deep Space Flight of Microwave Discharge Ion Engines onboard Hayabusa, pp. 1-10.
    • Takashi KOMINATO, Masatoshi MATSUOKA, Masashi UO, Tatsuaki HASHIMOTO, Takashi KUBOTA and Jun"ichiro KAWAGUCHI, HAYABUSA"s Optical Hybrid Navigation for Approaching to and Station Keeping around Asteroid ITOKAWA, pp. 11-20.
    • Hideo MORITA, Ken"ichi Shirakawa, Masashi UO, Tatsuaki HASHIMOTO, Takashi Kubota and Jun"ichiro KAWAGUCHI, Hayabusa Descent Navigation based on Accurate Landmark Tracking Scheme, pp. 21-31.
    • Masashi UO, Ken"ichi SHIRAKAWA, Tatsuaki HASHIMOTO, Takashi KUBOTA and Jun"ichiro KAWAGUCHI, Hayabusa Touching-Down to Itokawa -Autonomous Guidance and Navigation-, pp. 32-41.
    • Takeshi Oshima,Shinji Hagino and Jun"ichiro KAWAGUCHI, Asteroid Explorer "HAYABUSA" Contingency Operation, pp. 42-51.
  • Kawaguchi, J. et al. MUSES-C, Its launch and early orbit operations. Acta Astronautica, 59(8-11), 69-678, Oct.-Dec. 2006.
  • Yano, H. et al. What itokawa tells us: Geology of a sub-km, S-type asteroid investigated by hayabusa. Geochimica et Cosmochimica Acta, 2006 (in press).
  • Hiroi, T. et al. Developing space weathering on the asteroid 25143 Itokawa. Nature, 443(7107), 56-58, Sept. 2006.
  • Yano, H. et al. Touchdown of the Hayabusa Spacecraft at the Muses Sea on Itokawa. Science, 312, 1350-1353, Jun. 2006.
  • Demura, H. et al. Pole and Global Shape of 25143 Itokawa. Science, 312, 1347-1349, Jun. 2006.
  • Abe, S. et al. Mass and Local Topography Measurements of Itokawa by Hayabusa. Science, 312, 1344-1347, Jun. 2006.
  • Saito, J. et al. Detailed Images of Asteroid 25143 Itokawa from Hayabusa. Science, 312, 1341-1344, Jun. 2006.
  • Okada, T. et al. X-ray Fluorescence Spectrometry of Asteroid Itokawa by Hayabusa. Science, 312, 1338-1341, Jun. 2006.
  • Abe, M. et al. Near-Infrared Spectral Results of Asteroid Itokawa from the Hayabusa Spacecraft. Science, 312, 1334-1338, Jun. 2006.
  • Fujiwara, A. et al. The Rubble-Pile Asteroid Itokawa as Observed by Hayabusa. Science, 312, 1330-1334, Jun. 2006.
    http://www.sciencemag.org/content/vol312/issue5778/covtoc.dp.gif
  • Mukai, T., Nakamura, M.A., Sakai, T. Asteroidal surface studies by laboratory light scattering and LIDAR on HAYABUSA. Adv. Space Res., 37(1), 138-141, 2006 .
  • Kawaguchi, J., Kuninaka, H., Fujiwara, A., Uesugi, T. MUSES-C, Its launch and early orbit operations. Acta Astronautica, 2006 (in press).
  • Michel, P., Yoshikawa M. Earth impact probability of the Asteroid (25143) Itokawa to be sampled by the spacecraft Hayabusa. Icarus, 179(2), 291-296, 2005.
  • Lowry, S.C., Weissman, P.R., Hicks, M.D., Whiteley, R.J., Larson, S. Physical properties of Asteroid (25143) Itokawa―Target of the Hayabusa sample return mission. Icarus, 76(2), 408-417, Aug, 2005.
  • Ikkoh Funaki, Hitoshi Kuninaka and Kyoichiro Toki. Plasma Characterization of a 10-cm Diameter Microwave Discharge Ion Thruster. J. Propulsion and Power, 20(4), Jul. 2004.
  • Stephen B. Broschart and Daniel J. Scheeres. Control of Hovering Spacecraft Near Small Bodies: Application to Asteroid 25143 Itokawa. J. Guidance, Control, and Dynamics, 28(2), Mar. 2005.
  • Fujiwara, A., Kawaguchi, J., Uesugi, T. Planetary protection policy for MUSES-C. Adv. Space Res. 34(11). 2325-2327, 2004.
  • Fujiwara, A., Kawaguchi, J., Uesugi, K.T. Role of sample return mission MUSES-C in asteroid study. Adv. Space Res. 34(11), 2267-2269, 2004.
  • Kuninaka, H., Molina-Morales, P. Spacecraft charging due to lack of neutralization on ion thrusters. Acta Astronautica, 55(1), 27-38, Jul. 2004.
  • Kubota, T. An Autonomous Navigation and Guidance System for MUSES-C Asteroid Landing. Acta Astronautica, 52, 125-131, 2003.
  • Kawaguchi, J. The MUSES-C Mission for the Sample and Return-Its Technology Development Status and Readiness. Acta Astronautica, 52, 117-123, 2003
  • M. Kaasalainen, T. Kwiatkowski, M. Abe, J. Piironen, T. Nakamura, Y. Ohba, B. Dermawan, T. Farnham, F. Colas, S. Lowry, P. Weissman, R. J. Whiteley, D. J. Tholen, S. M. Larson, M. Yoshikawa, I. Toth and F. P. Velichko. CCD photometry and model of MUSES-C target (25143) 1998 SF36. Astronomy & Astrophysics, 405, L29-L32, 2003.
  • Hyakutake, T. et al. DSMC-PIC Analysis of a Plume from MUSES-C Ion Engines. Trans. Japan Society for Aeronautical and Space Sciences, 6(151), 24-30, 2003.
  • Tomita, N., Nakamura, A.M., Kamei, A., Mukai, T. Measurements of bidirectional reflectance of ordinary chondrite for muses-C in-situ detection. Adv. Space Res. 31(12), 2495-2499, Jun. 2003.
  • Hashimoto, T., Kubota, T., Mizuno, T. Light weight sensors for the autonomous asteroid landing of MUSES-C mission. Acta Astronautica, 52(2-6), 381-388, Jan.-Mar. 2003.
  • Kubota, T., Hashimoto, T., Sawai, S., Kawaguchi, J., Ninomiya, K., Uo, M., Baba, K. An autonomous navigation and guidance system for MUSES-C asteroid landing. Acta Astronautica, 52(2-6), 125-131, Jan.-Mar. 2003.
  • Kawaguchi, J., Uesugi, K, Fujiwara, A. The MUSES-C mission for the sample and return―its technology development status and readiness. Acta Astronautica, 52(2-6), 117-123, Jan.-Mar. 2003.
  • Yoshimitsu, T. et al. Micro-hopping robot for asteroid exploration. Acta Astronautica, 52(2-6), 1-446, Jan.-Mar. 2003.
  • Yamada, T., Inatani, Y., Honda, M., Hirai, K. Development of thermal protection system of the MUSES-C/DASH reentry capsule. Acta Astronautica, 51(1-9). 63-72, Jul.-Nov, 2002.
  • Okada, T., Kato, M., Shirai, K., Yamamoto, Y., Matsuda, T., Tsunemi, H., Kitamoto, S. Elemental mapping of asteroid 1989ML from MUSES-C orbiter. Adv. Space Res. 29(8), 1237-1242, Apr. 2002.
  • Mukai, T., Araki, H., Mizuno, T., Hatanaka, N., Nakamura, A.M., Kamei, A., Nakayama, H., Cheng, A. Detection of mass, shape and surface roughness of target asteroid of MUSES-C by LIDAR. Adv. Space Res. 29(8), 1231-1235, Apr. 2002.
  • Sawai, S., Kawaguchi, J., Scheeres, D. J., Yoshizawa, N., Ogasawara, M. Development of a target marker for landing on asteroids. J. Spacecraft and Rockets 38(4), 601-608, 2001.
  • Okada, T., Kato, M., Fujimura, A., Tsunemi, H., Kitamoto, S. X-ray fluorescence spectrometer onboard Muses-C. Adv. Space Res. 25(2), 345-348, 2000.
  • Fujiwara, A., Mukai, T., Kawaguchi, J., Uesugi, K.T. Sample return mission to NEA: MUSES-C. Adv. Space Res. 25(2), 231-238, 2000.
  • Miso, T., Hashimoto, T., Ninomiya, K. Optical guidance for autonomous landing of spacecraft. IEEE Trans. Aerospace and Electronic Systems, 35(2), 459-473, 1999.
  • Kawaguchi, J., Hashimoto, T., Kubota, T., Sawai, S., and Fujii, G. Autonomous optical guidance and navigation strategy around a small body. AIAA J. Guidance, Control, and Dynamics, 20(5), 1010-1017, 1997.
  • Kawaguchi, J., Uesugi, K.T., Fujiwara, A., Saitoh, H. The MUSES-C, mission description and its status. Acta Astronautica, 45(4-9), 397-405, Aug.-Nov., 1999.
  • Kawaguchi, J., Hashimoto, T., Misu, T., Sawai, S. An autonomous optical guidance and navigation around asteroids. Acta Astronautica, 44(5-6), 267-280, Mar. 1999.
  • Kuninaka, H., Satori, S. Development and Demonstration of a Cathodeless Electron Cyclotron Resonance Ion Thruster. J. Propulsion and Power, 14(6), 1022-1026, 1998.
  • Kawaguchi, J., Uesugi, T., Fujiwara, A., Matsuo, H. The MUSES-C, world"s first sample and return mission from near Earth asteroid:NEREUS. Acta Astronautica, 39(1-4). 15-23, Jul.-Aug. 1996.
  • 「Science」がはやぶさ特集号 「イトカワ」微粒子の分析結果で論文6編掲載

    米科学誌「Science」が探査機「はやぶさ」の成果を特集。小惑星「イトカワ」から持ち帰った微粒子の初期分析結果についての論文6編を掲載。

    探査機「はやぶさ」が小惑星「イトカワ」から持ち帰った微粒子の初期分析結果を、8月26日発行の米科学誌「Science」が特集した。微粒子の写真が表紙を飾り、イトカワの形成過程や地球に飛来する隕石の起源を検証する6編の論文が掲載された。

     初期分析に携わった東北大、北海道大、首都大学東京、大阪大、茨城大、東京大を中心とする研究グループによる論文を掲載した。

     微粒子は地球とは異なる同位体比を持ち、地球外物質であることが判明。イトカワなどの小惑星が、地球に落下する隕石の1種の供給源であることが分かった。イトカワには現在の10倍以上の母天体があり、大きな衝突が起きた後に再集積して今のイトカワになったと考えられるという。

     Scienceでは、はやぶさによるイトカワの観測成果が2006年6月に、太陽観測衛星「ひので」が07年12月に、月周回衛星「かぐや」が09年2月にそれぞれ特集され、表紙を飾っている。

    翻訳を見る

    16 cm논파!!

  • Miyamoto, H. et al. Regolith Migration and Sorting on Asteroid Itokawa.
  • The Journal of Space Technology and Scence, Vol. 22, No. 1, 2006 Spring.
    Special Issue : HAYABUSA ; Asteroid ITOKAWA Sample Return
    • Hitoshi KUNINAKA, Kazutaka NISHIYAMA, Ikko FUNAKI, Tetsuya YAMADA, Yukio SHIMIZU and Jun"ichiro KAWAGUCHI, Deep Space Flight of Microwave Discharge Ion Engines onboard Hayabusa, pp. 1-10.
    • Takashi KOMINATO, Masatoshi MATSUOKA, Masashi UO, Tatsuaki HASHIMOTO, Takashi KUBOTA and Jun"ichiro KAWAGUCHI, HAYABUSA"s Optical Hybrid Navigation for Approaching to and Station Keeping around Asteroid ITOKAWA, pp. 11-20.
    • Hideo MORITA, Ken"ichi Shirakawa, Masashi UO, Tatsuaki HASHIMOTO, Takashi Kubota and Jun"ichiro KAWAGUCHI, Hayabusa Descent Navigation based on Accurate Landmark Tracking Scheme, pp. 21-31.
    • Masashi UO, Ken"ichi SHIRAKAWA, Tatsuaki HASHIMOTO, Takashi KUBOTA and Jun"ichiro KAWAGUCHI, Hayabusa Touching-Down to Itokawa -Autonomous Guidance and Navigation-, pp. 32-41.
    • Takeshi Oshima,Shinji Hagino and Jun"ichiro KAWAGUCHI, Asteroid Explorer "HAYABUSA" Contingency Operation, pp. 42-51.
  • Kawaguchi, J. et al. MUSES-C, Its launch and early orbit operations. Acta Astronautica, 59(8-11), 69-678, Oct.-Dec. 2006.
  • Yano, H. et al. What itokawa tells us: Geology of a sub-km, S-type asteroid investigated by hayabusa. Geochimica et Cosmochimica Acta, 2006 (in press).
  • Hiroi, T. et al. Developing space weathering on the asteroid 25143 Itokawa. Nature, 443(7107), 56-58, Sept. 2006.
  • Yano, H. et al. Touchdown of the Hayabusa Spacecraft at the Muses Sea on Itokawa. Science, 312, 1350-1353, Jun. 2006.
  • Demura, H. et al. Pole and Global Shape of 25143 Itokawa. Science, 312, 1347-1349, Jun. 2006.
  • Abe, S. et al. Mass and Local Topography Measurements of Itokawa by Hayabusa. Science, 312, 1344-1347, Jun. 2006.
  • Saito, J. et al. Detailed Images of Asteroid 25143 Itokawa from Hayabusa. Science, 312, 1341-1344, Jun. 2006.
  • Okada, T. et al. X-ray Fluorescence Spectrometry of Asteroid Itokawa by Hayabusa. Science, 312, 1338-1341, Jun. 2006.
  • Abe, M. et al. Near-Infrared Spectral Results of Asteroid Itokawa from the Hayabusa Spacecraft. Science, 312, 1334-1338, Jun. 2006.
  • Fujiwara, A. et al. The Rubble-Pile Asteroid Itokawa as Observed by Hayabusa. Science, 312, 1330-1334, Jun. 2006.
    http://www.sciencemag.org/content/vol312/issue5778/covtoc.dp.gif
  • Mukai, T., Nakamura, M.A., Sakai, T. Asteroidal surface studies by laboratory light scattering and LIDAR on HAYABUSA. Adv. Space Res., 37(1), 138-141, 2006 .
  • Kawaguchi, J., Kuninaka, H., Fujiwara, A., Uesugi, T. MUSES-C, Its launch and early orbit operations. Acta Astronautica, 2006 (in press).
  • Michel, P., Yoshikawa M. Earth impact probability of the Asteroid (25143) Itokawa to be sampled by the spacecraft Hayabusa. Icarus, 179(2), 291-296, 2005.
  • Lowry, S.C., Weissman, P.R., Hicks, M.D., Whiteley, R.J., Larson, S. Physical properties of Asteroid (25143) Itokawa―Target of the Hayabusa sample return mission. Icarus, 76(2), 408-417, Aug, 2005.
  • Ikkoh Funaki, Hitoshi Kuninaka and Kyoichiro Toki. Plasma Characterization of a 10-cm Diameter Microwave Discharge Ion Thruster. J. Propulsion and Power, 20(4), Jul. 2004.
  • Stephen B. Broschart and Daniel J. Scheeres. Control of Hovering Spacecraft Near Small Bodies: Application to Asteroid 25143 Itokawa. J. Guidance, Control, and Dynamics, 28(2), Mar. 2005.
  • Fujiwara, A., Kawaguchi, J., Uesugi, T. Planetary protection policy for MUSES-C. Adv. Space Res. 34(11). 2325-2327, 2004.
  • Fujiwara, A., Kawaguchi, J., Uesugi, K.T. Role of sample return mission MUSES-C in asteroid study. Adv. Space Res. 34(11), 2267-2269, 2004.
  • Kuninaka, H., Molina-Morales, P. Spacecraft charging due to lack of neutralization on ion thrusters. Acta Astronautica, 55(1), 27-38, Jul. 2004.
  • Kubota, T. An Autonomous Navigation and Guidance System for MUSES-C Asteroid Landing. Acta Astronautica, 52, 125-131, 2003.
  • Kawaguchi, J. The MUSES-C Mission for the Sample and Return-Its Technology Development Status and Readiness. Acta Astronautica, 52, 117-123, 2003
  • M. Kaasalainen, T. Kwiatkowski, M. Abe, J. Piironen, T. Nakamura, Y. Ohba, B. Dermawan, T. Farnham, F. Colas, S. Lowry, P. Weissman, R. J. Whiteley, D. J. Tholen, S. M. Larson, M. Yoshikawa, I. Toth and F. P. Velichko. CCD photometry and model of MUSES-C target (25143) 1998 SF36. Astronomy & Astrophysics, 405, L29-L32, 2003.
  • Hyakutake, T. et al. DSMC-PIC Analysis of a Plume from MUSES-C Ion Engines. Trans. Japan Society for Aeronautical and Space Sciences, 6(151), 24-30, 2003.
  • Tomita, N., Nakamura, A.M., Kamei, A., Mukai, T. Measurements of bidirectional reflectance of ordinary chondrite for muses-C in-situ detection. Adv. Space Res. 31(12), 2495-2499, Jun. 2003.
  • Hashimoto, T., Kubota, T., Mizuno, T. Light weight sensors for the autonomous asteroid landing of MUSES-C mission. Acta Astronautica, 52(2-6), 381-388, Jan.-Mar. 2003.
  • Kubota, T., Hashimoto, T., Sawai, S., Kawaguchi, J., Ninomiya, K., Uo, M., Baba, K. An autonomous navigation and guidance system for MUSES-C asteroid landing. Acta Astronautica, 52(2-6), 125-131, Jan.-Mar. 2003.
  • Kawaguchi, J., Uesugi, K, Fujiwara, A. The MUSES-C mission for the sample and return―its technology development status and readiness. Acta Astronautica, 52(2-6), 117-123, Jan.-Mar. 2003.
  • Yoshimitsu, T. et al. Micro-hopping robot for asteroid exploration. Acta Astronautica, 52(2-6), 1-446, Jan.-Mar. 2003.
  • Yamada, T., Inatani, Y., Honda, M., Hirai, K. Development of thermal protection system of the MUSES-C/DASH reentry capsule. Acta Astronautica, 51(1-9). 63-72, Jul.-Nov, 2002.
  • Okada, T., Kato, M., Shirai, K., Yamamoto, Y., Matsuda, T., Tsunemi, H., Kitamoto, S. Elemental mapping of asteroid 1989ML from MUSES-C orbiter. Adv. Space Res. 29(8), 1237-1242, Apr. 2002.
  • Mukai, T., Araki, H., Mizuno, T., Hatanaka, N., Nakamura, A.M., Kamei, A., Nakayama, H., Cheng, A. Detection of mass, shape and surface roughness of target asteroid of MUSES-C by LIDAR. Adv. Space Res. 29(8), 1231-1235, Apr. 2002.
  • Sawai, S., Kawaguchi, J., Scheeres, D. J., Yoshizawa, N., Ogasawara, M. Development of a target marker for landing on asteroids. J. Spacecraft and Rockets 38(4), 601-608, 2001.
  • Okada, T., Kato, M., Fujimura, A., Tsunemi, H., Kitamoto, S. X-ray fluorescence spectrometer onboard Muses-C. Adv. Space Res. 25(2), 345-348, 2000.
  • Fujiwara, A., Mukai, T., Kawaguchi, J., Uesugi, K.T. Sample return mission to NEA: MUSES-C. Adv. Space Res. 25(2), 231-238, 2000.
  • Miso, T., Hashimoto, T., Ninomiya, K. Optical guidance for autonomous landing of spacecraft. IEEE Trans. Aerospace and Electronic Systems, 35(2), 459-473, 1999.
  • Kawaguchi, J., Hashimoto, T., Kubota, T., Sawai, S., and Fujii, G. Autonomous optical guidance and navigation strategy around a small body. AIAA J. Guidance, Control, and Dynamics, 20(5), 1010-1017, 1997.
  • Kawaguchi, J., Uesugi, K.T., Fujiwara, A., Saitoh, H. The MUSES-C, mission description and its status. Acta Astronautica, 45(4-9), 397-405, Aug.-Nov., 1999.
  • Kawaguchi, J., Hashimoto, T., Misu, T., Sawai, S. An autonomous optical guidance and navigation around asteroids. Acta Astronautica, 44(5-6), 267-280, Mar. 1999.
  • Kuninaka, H., Satori, S. Development and Demonstration of a Cathodeless Electron Cyclotron Resonance Ion Thruster. J. Propulsion and Power, 14(6), 1022-1026, 1998.
  • Kawaguchi, J., Uesugi, T., Fujiwara, A., Matsuo, H. The MUSES-C, world"s first sample and return mission from near Earth asteroid:NEREUS. Acta Astronautica, 39(1-4). 15-23, Jul.-Aug. 1996.
  • 「Science」가 매특집호 「실 강」미립자의 분석 결과로 논문 6편게재

    미 과학잡지 「Science」가 탐사기 「매」의 성과를 특집.소행성 「실 강」으로부터 가지고 돌아간 미립자의 초기 분석 결과에 대한 논문 6편을 게재.

    탐사기 「매」가 소행성 「실 강」으로부터 가지고 돌아간 미립자의 초기 분석 결과를, 8월 26일 발행의 미 과학잡지 「Science」가 특집했다.미립자의 사진이 표지를 장식해, 실 강의 형성 과정이나 지구에 비래 하는 운석의 기원을 검증하는 6편의논문이 게재되었다.

     초기 분석에 종사한 토호쿠대, 홋카이도대, 수도 대학 도쿄, 오사카대학교, 이바라키대, 도쿄대를 중심으로 하는 연구 그룹에 의한논문을 게재했다.

     미립자는 지구와는 다른 동위체비를 가져, 지구 외물질인 것이 판명.실 강등의 소행성이, 지구에 낙하하는 운석의 1종의 공급원인 것을 알았다.실 강에는 현재의 10배 이상의 어머니 천체가 있어, 큰 충돌이 일어난 후에 재집적해 지금의 실 강이 되었다고 생각된다고 한다.

     Science에서는, 매에 의한 실 강의 관측 성과가 2006년 6월에, 태양 관측 위성 「히의 것으로」가 07년 12월에, 달주회 위성 「가구점」이 09년 2월에 각각 특집되고 표지를 장식하고 있다.

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