SDSS-V Local Volume Mapper (LVM): A Glimpse into Orion
K. Kreckel, O. V. Egorov, E. Egorova, G. A. Blanc, N. Drory, M., Kounkel, J. E. Mendez-Delgado, C. G. Roman-Zuniga, S. F. Sanchez, G. S., Stringfellow, A. M. Stutz, E. Zari, J. K. Barrera-Ballesteros, D. Bizyaev, J., R. Brownstein, E. Congiu, J. G. Fernandez-Trincado, P. Garcia

TL;DR
The SDSS-V Local Volume Mapper provides the largest optical integral field unit map of the Milky Way's Orion region, revealing detailed ionization structures and gas diagnostics at unprecedented resolution, enabling new insights into star-forming regions.
Contribution
This work presents the first large-scale, high-resolution IFU mapping of the Orion Molecular Cloud complex, showcasing the capabilities of the SDSS-V LVM instrument.
Findings
Resolved ionization structures in Orion nebulae.
Detected ionized gas near sigma Orionis' bow wave.
Mapped line ratio variations across nebulae.
Abstract
The Orion Molecular Cloud complex, one of the nearest (D = 406 pc) and most extensively studied massive star-forming regions, is ideal for constraining the physics of stellar feedback, but its ~12 deg diameter on the sky requires a dedicated approach to mapping ionized gas structures within and around the nebula. The Sloan Digital Sky Survey (SDSS-V) Local Volume Mapper (LVM) is a new optical integral field unit (IFU) that will map the ionized gas within the Milky Way and Local Group galaxies, covering 4300 deg^2 of the sky with the new LVM Instrument. We showcase optical emission line maps from LVM covering 12 deg^2 inside of the Orion belt region, with 195,000 individual spectra combined to produce images at 0.07 pc (35.3") resolution. This is the largest IFU map made (to date) of the Milky Way, and contains well-known nebulae (the Horsehead Nebula, Flame Nebula, IC 434, and IC 432),…
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