Context. The abundance of key molecules determines the level of cooling that is necessary for the formation of stars and planetary systems. In this context, one needs to understand the details of the time dependent oxygen chemistry, leading to the formation of O-2 and H2O. Aims. We aim to determine the degree of correlation between the occurrence of O-2 and HOOH (hydrogen peroxide) in star-forming molecular clouds. We first detected O-2 and HOOH in rho Oph A, we now search for HOOH in Orion OMCA, where O-2 has also been detected. Methods. We mapped a 3\u27 x 3\u27 region around Orion H-2-Peak 1 with the Atacama Pathfinder Experiment (APEX). In addition to several maps in two transitions of HOOH, viz. 219.17 GHz and 251.91 GHz, we obtained s...
Context. The molecular species hydrogen peroxide, HOOH, is likely to be a key ingredient in the oxyg...
Context. Models of pure gas-phase chemistry in well-shielded regions of molecular clouds predict rel...
Context. Models of pure gas-phase chemistry in well-shielded regions of molecular clouds predict rel...
Context. The abundance of key molecules determines the level of cooling that is necessary for the fo...
Context. The abundance of key molecules determines the level of cooling that is necessary for the fo...
Context. The molecular species hydrogen peroxide, HOOH, is likely to be a key ingredient in the oxyg...
Context. The molecular species hydrogen peroxide, HOOH, is likely to be a key ingredient in the oxyg...
Context. Hydrogen peroxide (HOOH) was recently detected toward ρ Oph A. Subsequent astrochemical mod...
Oxygen is the third most abundant element in the Universe, and such, it plays and important role in ...
Oxygen is the third most abundant element in the Universe, and such, it plays and important role in ...
Oxygen is the third most abundant element in the Universe, and such, it plays and important role in ...
Oxygen is the third most abundant element in the Universe, and such, it plays and important role in ...
We report observations of molecular oxygen (O_2) rotational transitions at 487 GHz, 774 GHz, and 112...
Context. In the laboratory, hydrogen peroxide (HOOH) was proven to be an intermediate product in the...
Context. The molecular species hydrogen peroxide, HOOH, is likely to be a key ingredient in the oxyg...
Context. The molecular species hydrogen peroxide, HOOH, is likely to be a key ingredient in the oxyg...
Context. Models of pure gas-phase chemistry in well-shielded regions of molecular clouds predict rel...
Context. Models of pure gas-phase chemistry in well-shielded regions of molecular clouds predict rel...
Context. The abundance of key molecules determines the level of cooling that is necessary for the fo...
Context. The abundance of key molecules determines the level of cooling that is necessary for the fo...
Context. The molecular species hydrogen peroxide, HOOH, is likely to be a key ingredient in the oxyg...
Context. The molecular species hydrogen peroxide, HOOH, is likely to be a key ingredient in the oxyg...
Context. Hydrogen peroxide (HOOH) was recently detected toward ρ Oph A. Subsequent astrochemical mod...
Oxygen is the third most abundant element in the Universe, and such, it plays and important role in ...
Oxygen is the third most abundant element in the Universe, and such, it plays and important role in ...
Oxygen is the third most abundant element in the Universe, and such, it plays and important role in ...
Oxygen is the third most abundant element in the Universe, and such, it plays and important role in ...
We report observations of molecular oxygen (O_2) rotational transitions at 487 GHz, 774 GHz, and 112...
Context. In the laboratory, hydrogen peroxide (HOOH) was proven to be an intermediate product in the...
Context. The molecular species hydrogen peroxide, HOOH, is likely to be a key ingredient in the oxyg...
Context. The molecular species hydrogen peroxide, HOOH, is likely to be a key ingredient in the oxyg...
Context. Models of pure gas-phase chemistry in well-shielded regions of molecular clouds predict rel...
Context. Models of pure gas-phase chemistry in well-shielded regions of molecular clouds predict rel...