Пожалуйста, используйте этот идентификатор, чтобы цитировать или ссылаться на этот ресурс: http://elar.urfu.ru/handle/10995/92240
Название: Droplets. I. Pressure-dominated Coherent Structures in L1688 and B18
Авторы: Chen, H. H. -H.
Pineda, J. E.
Goodman, A. A.
Burkert, A.
Offner, S. S. R.
Friesen, R. K.
Myers, P. C.
Alves, F.
Arce, H. G.
Caselli, P.
Chacón-Tanarro, A.
Chen, M. C. -Y.
Di, Francesco, J.
Ginsburg, A.
Keown, J.
Kirk, H.
Martin, P. G.
Matzner, C.
Punanova, A.
Redaelli, E.
Rosolowsky, E.
Scibelli, S.
Seo, Y.
Shirley, Y.
Singh, A.
Дата публикации: 2019
Издатель: Institute of Physics Publishing
Библиографическое описание: Droplets. I. Pressure-dominated Coherent Structures in L1688 and B18 / H. H. -H. Chen, J. E. Pineda, A. A. Goodman, A. Burkert, et al.. — DOI 10.3847/1538-4357/ab1a40 // Astrophysical Journal. — 2019. — Vol. 2. — Iss. 877. — 93.
Аннотация: We present the observation and analysis of newly discovered coherent structures in the L1688 region of Ophiuchus and the B18 region of Taurus. Using data from the Green Bank Ammonia Survey, we identify regions of high density and near-constant, almost-thermal velocity dispersion. We reveal 18 coherent structures are revealed, 12 in L1688 and 6 in B18, each of which shows a sharp "transition to coherence" in velocity dispersion around its periphery. The identification of these structures provides a chance to statistically study the coherent structures in molecular clouds. The identified coherent structures have a typical radius of 0.04 pc and a typical mass of 0.4 M , generally smaller than previously known coherent cores identified by Goodman et al., Caselli et al., and Pineda et al. We call these structures "droplets." We find that, unlike previously known coherent cores, these structures are not virially bound by self-gravity and are instead predominantly confined by ambient pressure. The droplets have density profiles shallower than a critical Bonnor-Ebert sphere, and they have a velocity (V LSR) distribution consistent with the dense gas motions traced by NH3 emission. These results point to a potential formation mechanism through pressure compression and turbulent processes in the dense gas. We present a comparison with a magnetohydrodynamic simulation of a star-forming region, and we speculate on the relationship of droplets with larger, gravitationally bound coherent cores, as well as on the role that droplets and other coherent structures play in the star formation process. © 2019. The American Astronomical Society.
Ключевые слова: ISM: CLOUDS
ISM: INDIVIDUAL OBJECTS (L1688, B18)
ISM: KINEMATICS AND DYNAMICS
MAGNETOHYDRODYNAMICS (MHD)
RADIO LINES: ISM
STARS: FORMATION
URI: http://elar.urfu.ru/handle/10995/92240
Условия доступа: info:eu-repo/semantics/openAccess
Идентификатор SCOPUS: 85068859124
Идентификатор WOS: 000469801600011
Идентификатор PURE: 10031391
ISSN: 0004-637X
DOI: 10.3847/1538-4357/ab1a40
Располагается в коллекциях:Научные публикации ученых УрФУ, проиндексированные в SCOPUS и WoS CC

Файлы этого ресурса:
Файл Описание РазмерФормат 
10.3847-1538-4357-ab1a40.pdf12,5 MBAdobe PDFПросмотреть/Открыть


Все ресурсы в архиве электронных ресурсов защищены авторским правом, все права сохранены.