Widespread Hot Molecular Gas Heated by Shear-induced Turbulence in the Galactic Center

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Li, Juan, Wang, Junzhi, Shen, Zhiqiang, Vidal-Garcia, Alba, Li, Yuqiang, Li, DI, Pan, Liubin, Huang, Lei, Zhu, Fengyao, Zheng, Siqi, Ao, Yiping, Sanchez-Momge, Alvaro, Zhang, Zhiyu, Lu, Xing, Liu, Tie, Zheng, Xingwu
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866918160491347968
author Li, Juan
Wang, Junzhi
Shen, Zhiqiang
Vidal-Garcia, Alba
Li, Yuqiang
Li, DI
Pan, Liubin
Huang, Lei
Zhu, Fengyao
Zheng, Siqi
Ao, Yiping
Sanchez-Momge, Alvaro
Zhang, Zhiyu
Lu, Xing
Liu, Tie
Zheng, Xingwu
author_facet Li, Juan
Wang, Junzhi
Shen, Zhiqiang
Vidal-Garcia, Alba
Li, Yuqiang
Li, DI
Pan, Liubin
Huang, Lei
Zhu, Fengyao
Zheng, Siqi
Ao, Yiping
Sanchez-Momge, Alvaro
Zhang, Zhiyu
Lu, Xing
Liu, Tie
Zheng, Xingwu
contents We observed NH3 metastable inversion lines from (3, 3) to (18, 18) toward G0.66-0.13 in the Galactic center with the Shanghai Tianma 65m radio telescope and Yebes 40 m telescope. Highly-excited lines of NH3 (17, 17), (18, 18) were detected in emission for the first time in the interstellar medium, with upper energy levels up to 3100 K. Mapping observations reveal widespread hot molecular gas traced by NH3 (13, 13) toward G0.66-0.13. The rotation temperatures of hot gas traced by NH3 exceed 400 K, which amounts to five percent of the total NH3 in the Galactic Center. Hot gas (>400 K) and warm gas (100-140 K) are found in distinct clumps, with the hot gas located at the interfacing regions between different warm clouds. The theory of intermittency in turbulence reproduces the complex temperature structure in the central molecular zone, especially the hot gas observed here. The results presented here demonstrate that turbulence heating dominates the heating of the molecular gas in the Central Molecular Zone, while the turbulence is induced by the shear-motion of molecular clouds under the gravitational potential of the nuclear star clusters and the supermassive black hole. Our results suggest that shear-induced turbulence heating could be a widespread factor influencing galactic evolution.
format Preprint
id arxiv_https___arxiv_org_abs_2510_12518
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Widespread Hot Molecular Gas Heated by Shear-induced Turbulence in the Galactic Center
Li, Juan
Wang, Junzhi
Shen, Zhiqiang
Vidal-Garcia, Alba
Li, Yuqiang
Li, DI
Pan, Liubin
Huang, Lei
Zhu, Fengyao
Zheng, Siqi
Ao, Yiping
Sanchez-Momge, Alvaro
Zhang, Zhiyu
Lu, Xing
Liu, Tie
Zheng, Xingwu
Astrophysics of Galaxies
Solar and Stellar Astrophysics
We observed NH3 metastable inversion lines from (3, 3) to (18, 18) toward G0.66-0.13 in the Galactic center with the Shanghai Tianma 65m radio telescope and Yebes 40 m telescope. Highly-excited lines of NH3 (17, 17), (18, 18) were detected in emission for the first time in the interstellar medium, with upper energy levels up to 3100 K. Mapping observations reveal widespread hot molecular gas traced by NH3 (13, 13) toward G0.66-0.13. The rotation temperatures of hot gas traced by NH3 exceed 400 K, which amounts to five percent of the total NH3 in the Galactic Center. Hot gas (>400 K) and warm gas (100-140 K) are found in distinct clumps, with the hot gas located at the interfacing regions between different warm clouds. The theory of intermittency in turbulence reproduces the complex temperature structure in the central molecular zone, especially the hot gas observed here. The results presented here demonstrate that turbulence heating dominates the heating of the molecular gas in the Central Molecular Zone, while the turbulence is induced by the shear-motion of molecular clouds under the gravitational potential of the nuclear star clusters and the supermassive black hole. Our results suggest that shear-induced turbulence heating could be a widespread factor influencing galactic evolution.
title Widespread Hot Molecular Gas Heated by Shear-induced Turbulence in the Galactic Center
topic Astrophysics of Galaxies
Solar and Stellar Astrophysics
url https://arxiv.org/abs/2510.12518