Low-mass dense cores represent the state of molecular gas associated with the earliest phases of low-mass star formation. Such cores are called "protostellar" or "starless," depending on whether they do or do not contain compact sources of luminosity. In this chapter, the first half of the review of low-mass dense cores, we describe the numerous inferences made about the nature of starless cores as a result of recent observations, since these reveal the initial conditions of star formation. We focus on the identification of isolated starless cores and their internal physical and chemical properties, including morphologies, densities, temperatures, kinematics, and molecular abundances. These objects display a wide range of properties since t...
The complexity of physico-chemical models of star formation is increasing, with models that take int...
textIn this thesis, I focus on the physical and chemical evolution at the earliest stages of low-mas...
Context. Starless cores represent a very early stage of the star formation process, before collapse...
Low-mass dense cores represent the state of molecular gas associated with the earliest phases of low...
We review the properties of low mass dense molecular cloud cores, including starless, prestellar, an...
We review the properties of low mass dense molecular cloud cores, including starless, prestellar, an...
Dense low mass cores in nearby clouds like Taurus and Auriga are some of the simplest sites currentl...
Author Institution: INAF-Osservatorio Astrofisico di ArcetriStars like our Sun form in molecular clo...
Although the standard model of star formation has served us well for over 20 years, its details are ...
We investigate molecular evolution in a star-forming core that is initially a hydrostatic starless c...
Aims.We have measured the deuterium fractionation and the CO depletion factor (ratio between expect...
We present evidence that low-mass starless cores, the simplest units of star formation, are systemat...
In order to understand physical processes of low-mass star formation, it is important to investigate...
The first hydrostatic core, also called the first Larson core, is one of the first steps in low-mass...
We present SMA and CARMA continuum and spectral line observations of five dense cores located in the...
The complexity of physico-chemical models of star formation is increasing, with models that take int...
textIn this thesis, I focus on the physical and chemical evolution at the earliest stages of low-mas...
Context. Starless cores represent a very early stage of the star formation process, before collapse...
Low-mass dense cores represent the state of molecular gas associated with the earliest phases of low...
We review the properties of low mass dense molecular cloud cores, including starless, prestellar, an...
We review the properties of low mass dense molecular cloud cores, including starless, prestellar, an...
Dense low mass cores in nearby clouds like Taurus and Auriga are some of the simplest sites currentl...
Author Institution: INAF-Osservatorio Astrofisico di ArcetriStars like our Sun form in molecular clo...
Although the standard model of star formation has served us well for over 20 years, its details are ...
We investigate molecular evolution in a star-forming core that is initially a hydrostatic starless c...
Aims.We have measured the deuterium fractionation and the CO depletion factor (ratio between expect...
We present evidence that low-mass starless cores, the simplest units of star formation, are systemat...
In order to understand physical processes of low-mass star formation, it is important to investigate...
The first hydrostatic core, also called the first Larson core, is one of the first steps in low-mass...
We present SMA and CARMA continuum and spectral line observations of five dense cores located in the...
The complexity of physico-chemical models of star formation is increasing, with models that take int...
textIn this thesis, I focus on the physical and chemical evolution at the earliest stages of low-mas...
Context. Starless cores represent a very early stage of the star formation process, before collapse...