{"id":803190,"date":"2026-07-31T01:54:34","date_gmt":"2026-07-31T06:54:34","guid":{"rendered":"https:\/\/spaceweekly.com\/?p=803190"},"modified":"2026-07-31T01:54:34","modified_gmt":"2026-07-31T06:54:34","slug":"asteroid-explorer-hayabusa2-achieves-world-first-laser-ranging-during-asteroid-flyby","status":"publish","type":"post","link":"https:\/\/spaceweekly.com\/?p=803190","title":{"rendered":"Asteroid explorer Hayabusa2 achieves world-first laser ranging during asteroid flyby"},"content":{"rendered":"<p> <br \/>\n<\/p>\n<div>\n<div class=\"elem_heading_lv2\">\n<div class=\"elem_center elem_heading_lv2_pad\">\n<p><h2>Asteroid explorer Hayabusa2 achieves world-first laser ranging<br \/>during asteroid flyby<\/h2>\n<p>\t\t\t<!-- \/elem_heading_lv2 --><\/p>\n<\/div>\n<\/div>\n<div class=\"elem_paragraph\">\n<p class=\"right\">Japan Aerospace Exploration Agency<br \/>National Institute of Technology, Oshima College<br \/>Kyoto Sangyo University<br \/>National Astronomical Observatory of Japan<br \/>Chiba Institute of Technology<br \/>Hokkaido University<\/p>\n<p>\t\t\t<!-- \/elem_paragraph --><\/div>\n<div class=\"elem_paragraph\">\n<p>\n    \u2003On Sunday 5 July 2026, the Japan Aerospace Exploration Agency (JAXA) achieved the world\u2019s first successful laser ranging during an asteroid flyby using the LIDAR laser altimeter onboard the asteroid explorer Hayabusa2 during the flyby exploration of asteroid Torifune, the first exploration target of the Hayabusa2 Extended Mission.\n  <\/p>\n<\/div>\n<div class=\"elem_paragraph\">\n<p>\n    \u2003Laser ranging is a technology that measures the distance to a target with high precision by sending laser pulses at a target and measuring the time taken for the pulses to reflect of the target surface and return. The Hayabusa2 LIDAR has already achieved significant results in acquiring data on the surface topology of asteroid Ryugu, and additionally played an important role in spacecraft navigation. However, the laser ranging conducting during the flyby of asteroid Torifune was a different kind of challenge. For the ranging to be successful, the laser had to be directed from the fast-moving spacecraft onto a small target (asteroid Torifune) similar to traditional Yabusame Japanese horseback archery, where it is necessary to control the horse, your posture, and release the arrow without missing the split-second moment when the target is in sight. Accurately controlling the spacecraft\u2019s trajectory and attitude, as well as configuring the instruments to ensure that noise would not be falsely detected as a reflected signal were essential to success during this difficult laser ranging operation. The advanced preparations and activities on the actual day by the team, undertaken with determination not to miss this unique opportunity, produced this amazing success and ranging was successfully conducted twice, at 18:29 and 56.5 seconds and 57.5 seconds (approximately 4 seconds and 3 seconds before the closest approach to Torifune), from distances of about 20km and 15km respectively.\n  <\/p>\n<\/div>\n<figure id=\"figure_01\" class=\"elem_pic\" style=\"width:fit-content; margin-inline: auto; padding-bottom: 2rem; max-width:800px;\">\n  <figcaption style=\"width: 100%;\">\n    <span style=\"display: grid; grid-template-columns: auto 1fr; column-gap:10px; width: fit-content; margin-inline: auto; text-align: left;\"><br \/>\n      <span>Figure 1:<\/span><br \/>\n      <span>The relative position of the spacecraft and asteroid Torifune, and the observation attitude during the Torifune flyby. Hayabusa2 approached to within approximately 744m of the centre of Torifune at a high speed of about 5 km\/s and then passed the asteroid. The LIDAR emitted a laser pulse once per second from four minutes before closest approach until one minute after this time. If the trajectory and attitude were as planned, the laser was expected to strike Torifune only during a period of less than two seconds during this time, when the distance was around 20km at approximately 4 seconds before closest approach (red lines). <\/span><br \/>\n    <\/span><br \/>\n  <\/figcaption><\/figure>\n<figure id=\"figure_02\" class=\"elem_pic\" style=\"width:fit-content; margin-inline: auto; padding-bottom: 2rem; max-width:800px;\">\n  <img decoding=\"async\" style=\"width:100%;\" src=\"https:\/\/global.jaxa.jp\/press\/2026\/07\/.\/images\/20260730-2-02.png\" alt=\"Figure 2: Range measurements by the LIDAR laser altimeter and the times when the data was acquired. During the period when Torifune was predicted to enter the LIDAR field of view, range measurements of approximately 20km and 15km were obtained (red circles). At other times, the range measurement was zero (blue crosses). The vertical line indicates the time of closest approach based on the latest analysis. \" \/><figcaption style=\"width: 100%;\">\n    <span style=\"display: grid; grid-template-columns: auto 1fr; column-gap:10px; width: fit-content; margin-inline: auto; text-align: left;\"><br \/>\n      <span>Figure 2:<\/span><br \/>\n      <span>Range measurements by the LIDAR laser altimeter and the times when the data was acquired. During the period when Torifune was predicted to enter the LIDAR field of view, range measurements of approximately 20km and 15km were obtained (red circles). At other times, the range measurement was zero (blue crosses). The vertical line indicates the time of closest approach based on the latest analysis. <\/span><br \/>\n    <\/span><br \/>\n  <\/figcaption><\/figure>\n<div class=\"elem_paragraph\">\n<p>\n    \u2003The laser is focused into an extremely narrow beam, and hits only a very small portion of Torifune\u2019s surface. Specifically, when the distance was 20km, the illuminated area is limited to a region of approximately 30m in diameter (23m at 15km). The team is currently conducting a detailed analysis to determine exactly where the laser touched the surface of Torifune.\n  <\/p>\n<\/div>\n<figure id=\"figure_03\" class=\"elem_pic\" style=\"width:fit-content; margin-inline: auto; padding-bottom: 2rem; max-width:800px;\">\n  <img decoding=\"async\" style=\"width:100%;\" src=\"https:\/\/global.jaxa.jp\/press\/2026\/07\/.\/images\/20260730-2-03.png\" alt=\"Figure 3: The area illuminated by the laser when ranging was success (red) and for unsuccessful pulses (blue). Time progresses from the upper right to the lower left, and as the spacecraft approaches Torifune, the illuminated area becomes smaller. The precise time synchronization between the instruments required for analysis is currently in progress, so information may be revised in the future. \" \/><figcaption style=\"width: 100%;\">\n    <span style=\"display: grid; grid-template-columns: auto 1fr; column-gap:10px; width: fit-content; margin-inline: auto; text-align: left;\"><br \/>\n      <span>Figure 3:<\/span><br \/>\n      <span>The area illuminated by the laser when ranging was success (red) and for unsuccessful pulses (blue). Time progresses from the upper right to the lower left, and as the spacecraft approaches Torifune, the illuminated area becomes smaller. The precise time synchronization between the instruments required for analysis is currently in progress, so information may be revised in the future. <\/span><br \/>\n    <\/span><br \/>\n  <\/figcaption><\/figure>\n<div class=\"elem_paragraph\">\n<p>\n    \u2003Because there is no atmosphere in outer space, distant objects do not appear hazy but there is also nothing for comparison. This makes it difficult to distinguish between a large celestial body that is far away and a smaller body that is nearby based on the image data (photographs) alone. Laser ranging makes it possible to add scale to the photographs, and allow an accurate determination of the size of the celestial body. Moreover, if the ranging data can be obtained at multiple points in time, this can be combined with the spacecraft tracking data to determine both position and velocity of the celestial body with high accuracy, thereby improving the accuracy of orbital predictions. Such information about asteroids is particularly important not only for planetary exploration, but also for planetary defence\u2014namely understanding and responding to impacts of celestial bodies on Earth.\n  <\/p>\n<\/div>\n<div class=\"elem_paragraph\">\n<p>\n    \u2003Observations using lasers are characterised by the ability to obtain data regardless of sunlight conditions, even from locations that would appear shadowed and invisible in photographs. In the future, if higher-performance laser ranging equipment is used, it is expected that even when a flyby trajectory must be adopted with poor illumination conditions, the spacecraft can be guided accurately and information such as the size, shape, and motion of the celestial body can be successfully obtained. The success of this ranging operation constitutes an important technological demonstration result that will advance JAXA\u2019s deep-space exploration capabilities, and has marked a major milestone.\n  <\/p>\n<\/div>\n<div class=\"elem_paragraph\">\n<p>\n    * Credit for figures 1, 2, and 3: JAXA, Hokkaido University, Oshima National College of Maritime Technology, Chiba Institute of Technology, NAOJ, SOKENDAI, Kyoto Sangyo University.<\/p>\n<\/div>\n<div class=\"elem_heading_lv3\">\n<p><h3>Reference: Scientific instruments onboard Hayabusa2<\/h3>\n<\/p>\n<\/div>\n<div id=\"at\" class=\"elem_table_set\">\n<table summary=\"\" class=\"elem_table_set\">\n<colgroup>\n<col width=\"8%\" \/>\n<col width=\"16%\" \/>\n<col width=\"18%\" \/>\n<col width=\"22%\" \/>\n    <\/colgroup>\n<tbody>\n<tr>\n<td class=\"elem_table_set lv1 center\" style=\"vertical-align: middle;\">Abbreviation<\/td>\n<td class=\"elem_table_set lv1 center\" style=\"vertical-align: middle;\">Name<\/td>\n<td class=\"elem_table_set lv1 center\" style=\"vertical-align: middle;\">Purpose<\/td>\n<td class=\"elem_table_set lv1 center\" style=\"vertical-align: middle;\">Specification<\/td>\n<td class=\"elem_table_set lv1 center\" style=\"vertical-align: middle;\">Exterior<\/td>\n<\/tr>\n<tr>\n<td class=\"elem_table_set center\">ONC-T<\/td>\n<td class=\"elem_table_set\">Optical Navigation Camera &#8211; Telescopic<\/td>\n<td class=\"elem_table_set\">Capturing astronomical photographs.<br \/>Acquiring navigation and scientific data.\n<\/td>\n<td class=\"elem_table_set\">\u30fbFoV 6.35\u00b0\u00d7 6.35\u00b0<br \/>\u30fbPixel count 1024\u00d71024\n<\/td>\n<td class=\"elem_table_set center\"><img decoding=\"async\" style=\"width: 100%;\" src=\"https:\/\/global.jaxa.jp\/press\/2026\/07\/.\/images\/20260706-3-03.jpg\" alt=\"ONC-T Exterior\" \/><\/td>\n<\/tr>\n<tr>\n<td class=\"elem_table_set center\">TIR<\/td>\n<td class=\"elem_table_set\">Thermal InfraRed Imager<\/td>\n<td class=\"elem_table_set\">Measurement of the asteroid surface temperature, thermal inertia, surface roughness.<\/td>\n<td class=\"elem_table_set\">\u30fbFoV 16\u00b0\u00d712\u00b0<br \/>\u30fbObservation wavelength 8\u301c12\u03bcm<br \/>\u30fbPixel count 328\u00d7248\n<\/td>\n<td class=\"elem_table_set center\"><img decoding=\"async\" style=\"width: 100%;\" src=\"https:\/\/global.jaxa.jp\/press\/2026\/07\/.\/images\/20260706-3-04.jpg\" alt=\"TIR Exterior\" \/><\/td>\n<\/tr>\n<tr>\n<td class=\"elem_table_set center\">NIRS3<\/td>\n<td class=\"elem_table_set\">Near-Infrared Spectrometer<\/td>\n<td class=\"elem_table_set\">Investigation of composition, presence of water or hydroxyl groups (-OH).<\/td>\n<td class=\"elem_table_set\">\u30fbFoV 0.1\u00b0<br \/>\u30fbObservation wavelength 1.8\u301c3.2\u03bcm<br \/>\u30fbWavelength resolution 20nm\n<\/td>\n<td class=\"elem_table_set center\"><img decoding=\"async\" style=\"width: 100%;\" src=\"https:\/\/global.jaxa.jp\/press\/2026\/07\/.\/images\/20260706-3-05.jpg\" alt=\"NIRS3 Exterior\" \/><\/td>\n<\/tr>\n<tr>\n<td class=\"elem_table_set center\">LIDAR<\/td>\n<td class=\"elem_table_set\">Light Detection and Ranging<\/td>\n<td class=\"elem_table_set\">Measurement of the distance to the asteroid.<\/td>\n<td class=\"elem_table_set\">\u30fbPulse YAG laser, wavelength 1.064\u03bcm.<br \/>\u30fbRange 30m\u301c25km\n<\/td>\n<td class=\"elem_table_set center\"><img decoding=\"async\" style=\"width: 100%;\" src=\"https:\/\/global.jaxa.jp\/press\/2026\/07\/.\/images\/20260706-3-06.jpg\" alt=\"LIDAR Exterior\" \/><\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<\/div>\n<p>\t\t<!-- \/area_content_main --><\/div>\n<p><br \/>\n<br \/><a href=\"https:\/\/global.jaxa.jp\/press\/2026\/07\/20260730-2_e.html?rand=771667\">Source link <\/a><\/p>\n","protected":false},"excerpt":{"rendered":"<p>Asteroid explorer Hayabusa2 achieves world-first laser rangingduring asteroid flyby Japan Aerospace Exploration AgencyNational Institute of Technology, Oshima CollegeKyoto Sangyo UniversityNational Astronomical Observatory of JapanChiba Institute of TechnologyHokkaido University \u2003On Sunday&hellip; 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