The first astronomical detection of the metastable ($J,K$) = (18,18) line of NH3 is reported. With 3130 K above the ground state, this is the NH3 line with by far the highest energy detected in interstellar space. It is observed in absorption toward the galactic center star forming region Sgr B2. There is a clear detection toward Sgr B2(M) and a likely one toward SgrB2(N). An upper limit for emission is determined for Orion-KL. If we combine the (18,18) line results from Sgr B2(M) with the previously measured (12,12) absorption line, we find a rotation temperature of >1300 K for the absorbing cloud. This is at least a factor of two higher than previously derived values from less highly excited ammonia lines, giving a lower limit to the kine...
Context. Little is known about the structure of the interstellar medium and the nature of individual...
Ammonia is an important “weed” molecule in interstellar medium, planetary and exoplanetary atmospher...
We present the results of the observations of the (J,K) = (1,1) and the (J,K) = (2,2) in...
Aims.A study of the metastable ($J,K)=(18,\,18$) line of ammonia (NH3) is presented aiming at better...
The detection of the (J,K) = a(4,3) yields s(3,3) rotation inversion transition of ammonia at 124.6 ...
The (J,K) = (1,1), (2,2), (3,3), and (4,4) inversion lines of ammonia (NH3) have been detected towar...
We report the first results of the unbiased spectral high resolution survey obtained towards Sgr B2 ...
We report the detection of the ground state rotational emission of ammonia, ortho-NH3 (JK = 10 → 00)...
The chemical evolution of nitrogen during star and planet formation is still not fully understood. A...
The first detection of ammonia (NH_3) is reported from the Magellanic Clouds. Using the Australia Te...
At a distance of 2.4 kpc, W33 is an outstanding massive and luminous 10 pc-sized star forming comple...
The detection of NH3 inversion lines up to the $(J,K)=(6,\,6)$ level is reported toward the central...
Context. This paper is the third in a series of NH3 multilevel imaging studies in well-known, high-m...
Infrared absorption spectra of NH3 have been obtained at high resolution (0.02 cm−1) at seven temper...
We observe Arp 220, the nearest ultra-luminous infrared galaxy, over 4 GHz in the K and Ka bands, pr...
Context. Little is known about the structure of the interstellar medium and the nature of individual...
Ammonia is an important “weed” molecule in interstellar medium, planetary and exoplanetary atmospher...
We present the results of the observations of the (J,K) = (1,1) and the (J,K) = (2,2) in...
Aims.A study of the metastable ($J,K)=(18,\,18$) line of ammonia (NH3) is presented aiming at better...
The detection of the (J,K) = a(4,3) yields s(3,3) rotation inversion transition of ammonia at 124.6 ...
The (J,K) = (1,1), (2,2), (3,3), and (4,4) inversion lines of ammonia (NH3) have been detected towar...
We report the first results of the unbiased spectral high resolution survey obtained towards Sgr B2 ...
We report the detection of the ground state rotational emission of ammonia, ortho-NH3 (JK = 10 → 00)...
The chemical evolution of nitrogen during star and planet formation is still not fully understood. A...
The first detection of ammonia (NH_3) is reported from the Magellanic Clouds. Using the Australia Te...
At a distance of 2.4 kpc, W33 is an outstanding massive and luminous 10 pc-sized star forming comple...
The detection of NH3 inversion lines up to the $(J,K)=(6,\,6)$ level is reported toward the central...
Context. This paper is the third in a series of NH3 multilevel imaging studies in well-known, high-m...
Infrared absorption spectra of NH3 have been obtained at high resolution (0.02 cm−1) at seven temper...
We observe Arp 220, the nearest ultra-luminous infrared galaxy, over 4 GHz in the K and Ka bands, pr...
Context. Little is known about the structure of the interstellar medium and the nature of individual...
Ammonia is an important “weed” molecule in interstellar medium, planetary and exoplanetary atmospher...
We present the results of the observations of the (J,K) = (1,1) and the (J,K) = (2,2) in...