<p>Observing Cusp High-altitude Reconnection and Electrodynamics (OCHRE) is a student/early career researcher (ECR) focused sounding rocket that will fly as a compliment to the TRACERS satellites. OCHRE will utilize the deep institutional knowledge of the TRACERS science team to educate and mentor a team of graduate students and ECRs to serve as instrument leads, project manager, and primary investigator. Aiming for a near conjunction with, and at an apogee above, TRACERS in the northern polar cusp, OCHRE will answer some remaining questions from the TRICE-II sounding rockets using TRACERS to contextualize observations in the larger-scale polar cusp dynamics.</p>

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Observing Cusp High-Altitude Reconnection and Electrodynamics: The TRACERS Student Rocket

  • Brendan N. Powers,
  • Connor A. Feltman,
  • Allison N. Jaynes,
  • Aidan T. Moore,
  • Tamar Ervin,
  • Kristie LLera,
  • Olivia L. Jones,
  • Brandon L. Burkholder,
  • Jason A. Homann,
  • Arissa S. Khan,
  • David H. Vandercoy-Daniels,
  • Craig A. Kletzing,
  • David M. Miles,
  • John W. Bonnell,
  • Jasper S. Halekas,
  • Stephen A. Fuselier,
  • George B. Hospodarsky,
  • Scott R. Bounds

摘要

Observing Cusp High-altitude Reconnection and Electrodynamics (OCHRE) is a student/early career researcher (ECR) focused sounding rocket that will fly as a compliment to the TRACERS satellites. OCHRE will utilize the deep institutional knowledge of the TRACERS science team to educate and mentor a team of graduate students and ECRs to serve as instrument leads, project manager, and primary investigator. Aiming for a near conjunction with, and at an apogee above, TRACERS in the northern polar cusp, OCHRE will answer some remaining questions from the TRICE-II sounding rockets using TRACERS to contextualize observations in the larger-scale polar cusp dynamics.