We study the fragmentation of the nearest high line-mass filament, the integral shaped filament (ISF, line-mass ~400 M⊙ pc-1) in the Orion A molecular cloud. We have observed a 1.6 pc long section of the ISF with the Atacama Large Millimetre/submillimeter Array (ALMA) at 3 mm continuum emission, at a resolution of ~3″ (1200 AU). We identify from the region 43 dense cores with masses about a solar mass. 60% of the ALMA cores are protostellar and 40% are starless. The nearest neighbour separations of the cores do not show a preferred fragmentation scale; the frequency of short separations increases down to 1200 AU. We apply a two-point correlation analysis on the dense core separations and show that the ALMA cores are significantly grouped at...
Aim. We have investigated the gas organization within the paradigmatic Integral Shape Filament (ISF)...
Context. The formation of high-mass star-forming regions from their parental gas cloud and the subse...
Context. Recent observations suggest a scenario in which filamentary structures in the interstellar ...
Context. The Orion molecular cloud is the closest region of high-mass star formation. It is an ideal...
Context. The filamentary structure of molecular clouds may set important constraints on the mass dis...
P. S. T. is very grateful for support from the Joint ALMA Observatory (Santiago, Chile) Science Visi...
Context. The Orion molecular cloud is the closest region of high-mass star formation. It is an ideal...
PST acknowledges support from the STFC (grant number ST/M001296/1).Aim. We have investigated the gas...
Context. Filamentary structures in the interstellar medium are crucial ingredients of the star forma...
Aim. We have investigated the gas organization within the paradigmatic Integral Shape Filament (ISF)...
Context. Filamentary structures in the interstellar medium are crucial ingredients in the star forma...
Context. An increasing number of hundred-parsec-scale, high line-mass filaments are being detected i...
Context. Dense molecular filaments are central to the star formation process, but the detailed manne...
Aim. We have investigated the gas organization within the paradigmatic Integral Shape Filament (ISF)...
Context. The formation of high-mass star-forming regions from their parental gas cloud and the subse...
Context. Recent observations suggest a scenario in which filamentary structures in the interstellar ...
Context. The Orion molecular cloud is the closest region of high-mass star formation. It is an ideal...
Context. The filamentary structure of molecular clouds may set important constraints on the mass dis...
P. S. T. is very grateful for support from the Joint ALMA Observatory (Santiago, Chile) Science Visi...
Context. The Orion molecular cloud is the closest region of high-mass star formation. It is an ideal...
PST acknowledges support from the STFC (grant number ST/M001296/1).Aim. We have investigated the gas...
Context. Filamentary structures in the interstellar medium are crucial ingredients of the star forma...
Aim. We have investigated the gas organization within the paradigmatic Integral Shape Filament (ISF)...
Context. Filamentary structures in the interstellar medium are crucial ingredients in the star forma...
Context. An increasing number of hundred-parsec-scale, high line-mass filaments are being detected i...
Context. Dense molecular filaments are central to the star formation process, but the detailed manne...
Aim. We have investigated the gas organization within the paradigmatic Integral Shape Filament (ISF)...
Context. The formation of high-mass star-forming regions from their parental gas cloud and the subse...
Context. Recent observations suggest a scenario in which filamentary structures in the interstellar ...