Context. Stellar feedback from high-mass stars shapes the interstellar medium, and thereby impacts gas that will form future generations of stars. However, due to our inability to track the time evolution of individual molecular clouds, quantifying the exact role of stellar feedback on their star formation history is an observationally challenging task. Aims. In the present study, we take advantage of the unique properties of the G316.75-00.00 massive-star forming ridge to determine how stellar feedback from O-stars impacts the dynamical stability of massive filaments. The G316.75 ridge is 13.6 pc long and contains 18 900 M⊙ of H_2 gas, half of which is infrared dark and half of which infrared bright. The infrared bright part has already f...
We present a suite of 3D multiphysics MHD simulations following star formation in isolated turbulent...
We present a suite of 3D multiphysics MHD simulations following star formation in isolated turbulent...
It is a major open question which physical processes stop gas accretion on to giant molecular clouds...
Context. Stellar feedback from high-mass stars shapes the interstellar medium, and thereby impacts g...
Context. Stellar feedback from high-mass stars shapes the interstellar medium, and thereby impacts g...
Context. Stellar feedback from high-mass stars shapes the interstellar medium, and thereby impacts g...
Context. Stellar feedback from high-mass stars shapes the interstellar medium, and thereby impacts g...
Context. Stellar feedback from high-mass stars shapes the interstellar medium, and thereby impacts g...
Context. Stellar feedback from high-mass stars shapes the interstellar medium, and thereby impacts g...
Context. Stellar feedback from high-mass stars shapes the interstellar medium, and thereby impacts g...
Context. Stellar feedback from high-mass stars shapes the interstellar medium, and thereby impacts g...
Stellar feedback from high-mass stars shapes the interstellar medium, and thereby impacts gas that w...
Stellar feedback from high-mass stars shapes the interstellar medium, and thereby impacts gas that w...
Stellar feedback from high-mass stars shapes the interstellar medium, and thereby impacts gas that w...
Stellar feedback from high-mass stars shapes the interstellar medium, and thereby impacts gas that w...
We present a suite of 3D multiphysics MHD simulations following star formation in isolated turbulent...
We present a suite of 3D multiphysics MHD simulations following star formation in isolated turbulent...
It is a major open question which physical processes stop gas accretion on to giant molecular clouds...
Context. Stellar feedback from high-mass stars shapes the interstellar medium, and thereby impacts g...
Context. Stellar feedback from high-mass stars shapes the interstellar medium, and thereby impacts g...
Context. Stellar feedback from high-mass stars shapes the interstellar medium, and thereby impacts g...
Context. Stellar feedback from high-mass stars shapes the interstellar medium, and thereby impacts g...
Context. Stellar feedback from high-mass stars shapes the interstellar medium, and thereby impacts g...
Context. Stellar feedback from high-mass stars shapes the interstellar medium, and thereby impacts g...
Context. Stellar feedback from high-mass stars shapes the interstellar medium, and thereby impacts g...
Context. Stellar feedback from high-mass stars shapes the interstellar medium, and thereby impacts g...
Stellar feedback from high-mass stars shapes the interstellar medium, and thereby impacts gas that w...
Stellar feedback from high-mass stars shapes the interstellar medium, and thereby impacts gas that w...
Stellar feedback from high-mass stars shapes the interstellar medium, and thereby impacts gas that w...
Stellar feedback from high-mass stars shapes the interstellar medium, and thereby impacts gas that w...
We present a suite of 3D multiphysics MHD simulations following star formation in isolated turbulent...
We present a suite of 3D multiphysics MHD simulations following star formation in isolated turbulent...
It is a major open question which physical processes stop gas accretion on to giant molecular clouds...