Search Results - "Bambach, Patrick"

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  1. 1

    Bistatic Full-wave Radar Tomography Detects Deep Interior Voids, Cracks, and Boulders in a Rubble-pile Asteroid Model by Sorsa, Liisa-Ida, Takala, Mika, Bambach, Patrick, Deller, Jakob, Vilenius, Esa, Pursiainen, Sampsa

    Published in The Astrophysical journal (10-02-2019)
    “…In this paper, we investigate full-wave computed radar tomography (CRT) using a rubble-pile asteroid model in which a realistic shape (Itokawa) is coupled with…”
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    Journal Article
  2. 2

    DISCUS – The Deep Interior Scanning CubeSat mission to a rubble pile near-Earth asteroid by Bambach, Patrick, Deller, Jakob, Vilenius, Esa, Pursiainen, Sampsa, Takala, Mika, Braun, Hans Martin, Lentz, Harald, Wittig, Manfred

    Published in Advances in space research (15-12-2018)
    “…We have performed an initial stage conceptual design study for the Deep Interior Scanning CubeSat (DISCUS), a tandem 6U CubeSat carrying a bistatic radar as…”
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    Journal Article
  3. 3

    Far-Field Inversion for the Deep Interior Scanning CubeSat by Takala, Mika, Bambach, Patrick, Deller, Jakob, Vilenius, Esa, Wittig, Manfred, Lentz, Harald, Braun, Hans Martin, Kaasalainen, Mikko, Pursiainen, Sampsa

    “…This study aims at advancing mathematical and computational techniques for reconstructing the interior structure of a small solar system body via computed…”
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    Journal Article
  4. 4

    Tomographic inversion of gravity gradient field for a synthetic Itokawa model by Sorsa, Liisa-Ida, Takala, Mika, Bambach, Patrick, Deller, Jakob, Vilenius, Esa, Agarwal, Jessica, Carroll, Kieran A., Karatekin, Özgür, Pursiainen, Sampsa

    Published in Icarus (New York, N.Y. 1962) (15-01-2020)
    “…This article investigates reconstructing the internal mass density of a numerical asteroid model using the gradient of a simulated gravity field as synthetic…”
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    Journal Article
  5. 5

    Bistatic full-wave radar tomography detects deep interior voids, cracks and boulders in a rubble-pile asteroid model by Sorsa, Liisa-Ida, Takala, Mika, Bambach, Patrick, Deller, Jakob, Vilenius, Esa, Pursiainen, Sampsa

    Published 11-09-2019
    “…In this paper, we investigate full-wave computed radar tomography (CRT) using a rubble-pile asteroid model in which a realistic shape (Itokawa) is coupled with…”
    Get full text
    Journal Article
  6. 6

    Tomographic inversion of gravity gradient field for a synthetic Itokawa model by Sorsa, Liisa-Ida, Takala, Mika, Bambach, Patrick, Deller, Jakob, Vilenius, Esa, Agarwal, Jessica, Carroll, Kieran A, Karatekin, Özgür, Pursiainen, Sampsa

    Published 11-09-2019
    “…This article investigates reconstructing the internal mass density of a numerical asteroid model using the gradient of a simulated gravity field as synthetic…”
    Get full text
    Journal Article
  7. 7

    CubeSat Based Radio Tomography for a Rubble Pile Asteroid: DISCUS Mission Concept by Takala, Mika, Bambach, Patrick, Deller, Jakob, Vilenius, Esa, Wittig, Manfred, Lentz, Harald, Braun, Hans Martin, Pursiainen, Sampsa

    “…This presentation concentrates on the possibility to perform radio tomography measurements using CubeSat spacecraft carrying a bistatic radar. We present both…”
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    Conference Proceeding
  8. 8

    DISCUS - The Deep Interior Scanning CubeSat mission to a rubble pile near-Earth asteroid by Bambach, Patrick, Deller, Jakob, Vilenius, Esa, Pursiainen, Sampsa, Takala, Mika, Braun, Hans Martin, Lentz, Harald, Wittig, Manfred

    Published 04-05-2018
    “…We have performed an initial stage conceptual design study for the Deep Interior Scanning CubeSat (DISCUS), a tandem 6U CubeSat carrying a bistatic radar as…”
    Get full text
    Journal Article
  9. 9

    Far-Field Inversion for the Deep Interior Scanning CubeSat by Takala, Mika, Bambach, Patrick, Deller, Jakob, Vilenus, Esa, Wittig, Manfred, Lentz, Harald, Braun, Hans Martin, Kaasalainen, Mikko, Pursiainen, Sampsa

    Published 13-09-2017
    “…This study aims at advancing mathematical and computational techniques for reconstructing the interior structure of a near earth asteroid (NEA) via Computed…”
    Get full text
    Journal Article