SPHEREx Wide-Field Infrared Spectral Mapping of Interstellar Ices and Polycyclic Aromatic Hydrocarbons

Fuente: arXiv
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Main Authors: Hora, Joseph L., Noh, Jinyoung K., Melnick, Gary J., Hensley, Brandon S., Paladini, Roberta, Lee, Jeong-Eun, Ashby, Matthew L. N., Tolls, Volker, Kim, Jaeyeong, Werner, Michael W., Bock, James J., Bruton, Sean, Chen, Shuang-Shuang, Chang, Tzu-Ching, Chiang, Yi-Kuan, Cooray, Asantha, Crill, Brendan P., Cukierman, Ari J., Doré, Olivier, Faisst, Andreas L., Huai, Zhaoyu, Hui, Howard, Jeong, Woong-Seob, Kang, Miju, Korngut, Phil M., Lee, Ho-Gyu, Lisse, Carey M., Masters, Daniel C., Murgia, Giulia, Nguyen, Chi H., Rustamkulov, Zafar, Seok, Ji Yeon, Wen, Robin Y., Yang, Yujin, Zemcov, Michael
Format: Preprint
Published: 2026
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author Hora, Joseph L.
Noh, Jinyoung K.
Melnick, Gary J.
Hensley, Brandon S.
Paladini, Roberta
Lee, Jeong-Eun
Ashby, Matthew L. N.
Tolls, Volker
Kim, Jaeyeong
Werner, Michael W.
Bock, James J.
Bruton, Sean
Chen, Shuang-Shuang
Chang, Tzu-Ching
Chiang, Yi-Kuan
Cooray, Asantha
Crill, Brendan P.
Cukierman, Ari J.
Doré, Olivier
Faisst, Andreas L.
Huai, Zhaoyu
Hui, Howard
Jeong, Woong-Seob
Kang, Miju
Korngut, Phil M.
Lee, Ho-Gyu
Lisse, Carey M.
Masters, Daniel C.
Murgia, Giulia
Nguyen, Chi H.
Rustamkulov, Zafar
Seok, Ji Yeon
Wen, Robin Y.
Yang, Yujin
Zemcov, Michael
author_facet Hora, Joseph L.
Noh, Jinyoung K.
Melnick, Gary J.
Hensley, Brandon S.
Paladini, Roberta
Lee, Jeong-Eun
Ashby, Matthew L. N.
Tolls, Volker
Kim, Jaeyeong
Werner, Michael W.
Bock, James J.
Bruton, Sean
Chen, Shuang-Shuang
Chang, Tzu-Ching
Chiang, Yi-Kuan
Cooray, Asantha
Crill, Brendan P.
Cukierman, Ari J.
Doré, Olivier
Faisst, Andreas L.
Huai, Zhaoyu
Hui, Howard
Jeong, Woong-Seob
Kang, Miju
Korngut, Phil M.
Lee, Ho-Gyu
Lisse, Carey M.
Masters, Daniel C.
Murgia, Giulia
Nguyen, Chi H.
Rustamkulov, Zafar
Seok, Ji Yeon
Wen, Robin Y.
Yang, Yujin
Zemcov, Michael
contents We present some of the first infrared spectral maps acquired by SPHEREx. These maps, which to our knowledge are the largest of their type ever compiled in the near-infrared, reveal multiple strong lines due to interstellar ices and polycyclic aromatic hydrocarbons (PAHs) throughout the Cygnus X and North American Nebula regions. The maps emphasize the strongest features arising from the 3 $μ$m H$_2$O, 4.27 $μ$m CO$_2$, and 4.67 $μ$m CO lines and the 3.28 $μ$m PAH feature, all of which are detected over large areas with complex and filamentary spatial distributions. The ice absorption maps of H$_2$O and CO$_2$ in particular broadly trace dense, cold, and well-shielded regions across Cygnus X, consistent with the established picture of efficient ice formation in dense molecular clouds. The interstellar ice features are also detected abundantly in diffuse absorption over wide areas. The relative strength of the H$_2$O and CO$_2$ features varies among different lines of sight, indicating possible differences in local physical conditions or chemical variations. The 3.28 $μ$m PAH emission correlates with the emission from the 7.7 and 11.2 $μ$m features, but shows small differences that may trace the grain size distribution and variations in the ambient UV field. SPHEREx all-sky spectral imaging, of which only a small fraction is showcased in this work, will support numerous science investigations including the structure of the Galaxy, the physics of the interstellar medium, and the chemistry of stars.
format Preprint
id arxiv_https___arxiv_org_abs_2603_12390
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle SPHEREx Wide-Field Infrared Spectral Mapping of Interstellar Ices and Polycyclic Aromatic Hydrocarbons
Hora, Joseph L.
Noh, Jinyoung K.
Melnick, Gary J.
Hensley, Brandon S.
Paladini, Roberta
Lee, Jeong-Eun
Ashby, Matthew L. N.
Tolls, Volker
Kim, Jaeyeong
Werner, Michael W.
Bock, James J.
Bruton, Sean
Chen, Shuang-Shuang
Chang, Tzu-Ching
Chiang, Yi-Kuan
Cooray, Asantha
Crill, Brendan P.
Cukierman, Ari J.
Doré, Olivier
Faisst, Andreas L.
Huai, Zhaoyu
Hui, Howard
Jeong, Woong-Seob
Kang, Miju
Korngut, Phil M.
Lee, Ho-Gyu
Lisse, Carey M.
Masters, Daniel C.
Murgia, Giulia
Nguyen, Chi H.
Rustamkulov, Zafar
Seok, Ji Yeon
Wen, Robin Y.
Yang, Yujin
Zemcov, Michael
Astrophysics of Galaxies
Solar and Stellar Astrophysics
We present some of the first infrared spectral maps acquired by SPHEREx. These maps, which to our knowledge are the largest of their type ever compiled in the near-infrared, reveal multiple strong lines due to interstellar ices and polycyclic aromatic hydrocarbons (PAHs) throughout the Cygnus X and North American Nebula regions. The maps emphasize the strongest features arising from the 3 $μ$m H$_2$O, 4.27 $μ$m CO$_2$, and 4.67 $μ$m CO lines and the 3.28 $μ$m PAH feature, all of which are detected over large areas with complex and filamentary spatial distributions. The ice absorption maps of H$_2$O and CO$_2$ in particular broadly trace dense, cold, and well-shielded regions across Cygnus X, consistent with the established picture of efficient ice formation in dense molecular clouds. The interstellar ice features are also detected abundantly in diffuse absorption over wide areas. The relative strength of the H$_2$O and CO$_2$ features varies among different lines of sight, indicating possible differences in local physical conditions or chemical variations. The 3.28 $μ$m PAH emission correlates with the emission from the 7.7 and 11.2 $μ$m features, but shows small differences that may trace the grain size distribution and variations in the ambient UV field. SPHEREx all-sky spectral imaging, of which only a small fraction is showcased in this work, will support numerous science investigations including the structure of the Galaxy, the physics of the interstellar medium, and the chemistry of stars.
title SPHEREx Wide-Field Infrared Spectral Mapping of Interstellar Ices and Polycyclic Aromatic Hydrocarbons
topic Astrophysics of Galaxies
Solar and Stellar Astrophysics
url https://arxiv.org/abs/2603.12390