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Related papers: Carbon monoxide in the solar atmosphere I. Numeric…

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This study is aimed to contribute to a more comprehensive understanding of the molecular hydrogen distribution in the galaxy M33 by introducing novel methods for generating high angular resolution (18.2$''$, equivalent to 75 pc) column…

The properties of synthetic CO emission from 3D simulations of forming molecular clouds are studied within the SILCC-Zoom project. Since the time scales of cloud evolution and molecule formation are comparable, the simulations include a…

Radical recombination has been proposed to lead to the formation of complex organic molecules (COMs) in CO-rich ices in the early stages of star formation. These COMs can then undergo hydrogen addition and abstraction reactions leading to a…

Astrophysics of Galaxies · Physics 2018-06-07 S. Álvarez-Barcia , P. Russ , J. Kästner , T. Lamberts

Determining the efficiency with which gas is converted into stars in galaxies requires an accurate determination of the total reservoir of molecular gas mass. However, despite being the most abundant molecule in the Universe, H$_2$ is…

Although observational data unequivocally point out to the presence of chromospheres in red giant stars, no attempts have been made so far to model them using 3D hydrodynamical model atmospheres. We therefore compute an exploratory 3D…

Solar and Stellar Astrophysics · Physics 2017-10-04 Sven Wedemeyer , Arunas Kucinskas , Jonas Klevas , Hans-Gunter Ludwig

The recovery of cosmic ray Carbon nuclei of energy ~20-125 MeV/nuc in solar cycle #23 from 2004 to 2010 has been followed at three locations, near the Earth using ACE data and at V2 between 74-92 AU and also at V1 beyond the heliospheric…

Molecular hydrogen (H$_2$) is by far the most abundant molecule in the Universe. However, due to the low emissivity of H$_2$, carbon monoxide (CO) is widely used instead to trace molecular gas in galaxies. The relative abundances of these…

Astrophysics of Galaxies · Physics 2025-04-30 Sergei Balashev , Daria Kosenko , Pasquier Noterdaeme

Using quantum molecular dynamic simulations, we have studied the thermophysical properties of warm dense carbon monoxide under extreme conditions. The principal Hugoniot, which is derived from the equation of state, shows excellent…

Materials Science · Physics 2015-05-28 Yu-Juan Zhang , Cong Wang , Da-Fang Li , Ping Zhang

We revised the treatment of interstellar dust in the KOSMA-\tau\ PDR model code to achieve a consistent description of the dust-related physics in the code. The detailed knowledge of the dust properties is then used to compute the dust…

Instrumentation and Methods for Astrophysics · Physics 2012-11-16 M. Röllig , R. Szczerba , V. Ossenkopf , C. Glück

With numerical experiments we explore the feasibility of using high frequency waves for probing the magnetic fields in the photosphere and the chromosphere of the Sun. We track a plane-parallel, monochromatic wave that propagates through a…

Astrophysics · Physics 2009-11-13 O. Steiner , G. Vigeesh , L. Krieger , S. Wedemeyer-Böhm , W. Schaffenberger , B. Freytag

The electrochemical oxidation of carbon monoxide adsorbed (COad) on platinum-on-carbon electrodes was studied via a methodology in which pre-adsorbed CO was partially oxidized by applying potentiostatic pulses for certain durations. The…

Carbon monoxide is the most abundant molecule after H$_2$ and is important for chemistry in circumstellar envelopes around late-type stars. The size of the envelope is important when modelling low-J transition lines and deriving mass-loss…

Solar and Stellar Astrophysics · Physics 2017-10-18 M. A. T. Groenewegen

We investigate the effect of pressure, temperature and acidity on the composition of water-rich carbon-bearing fluids at thermodynamic conditions that correspond to the Earth's deep Crust and Upper Mantle. Our first-principles molecular…

Chemical Physics · Physics 2020-06-24 Riccardo Dettori , Davide Donadio

We have computed a grid of hydrostatic spherical COMARCS models for C stars covering metallicities from [Z/H]=0 to -2 and values of the carbon excess [C-O] from 6.41 to 9.15, plus some temperature sequences, where the amount of oxygen and…

Solar and Stellar Astrophysics · Physics 2019-05-23 Bernhard Aringer , Paola Marigo , Walter Nowotny , Leo Girardi , Marko Mecina , Ambra Nanni

We present a model for simulating Carbon Monoxide (CO) rotational line emission in molecular clouds, taking account of their 3D spatial distribution in galaxies with different geometrical properties. The model implemented is based on recent…

Cosmology and Nongalactic Astrophysics · Physics 2017-05-03 Giuseppe Puglisi , Giulio Fabbian , Carlo Baccigalupi

Glycoaldehyde, ethylene glycol, and methyl formate are complex organic molecules that have been observed in dark molecular clouds. Because there is no efficient gas-phase route to produce these species, it is expected that a low-temperature…

Solar and Stellar Astrophysics · Physics 2020-02-12 M. A. J. Simons , T. Lamberts , H. M. Cuppen

The carbon monoxide (CO) spectral line energy distributions (SLEDs) of galaxies contain a wealth of information about conditions in their cold interstellar gas. Here we use galaxy-scale observations of the three lowest energy CO lines to…

Astrophysics of Galaxies · Physics 2025-07-28 Ryan P. Keenan , Daniel P. Marrone , Garrett K. Keating

We have computed accurate 1-D solar models including both a macroscopic mixing process in the solar tachocline as well as up-to-date microscopic physical ingredients. Using sound speed and density profiles inferred through primary inversion…

Astrophysics · Physics 2008-11-26 A. S. Brun , H. M. Antia , S. M. Chitre , J. -P. Zahn

Two different types of experiments were performed. In the first experiment, we studied the low-temperature condensation of vaporized graphite inside bulk liquid helium, while in the second experiment, we studied the condensation of single…

Atomic and Molecular Clusters · Physics 2018-05-07 S. A. Krasnokutski , M. Goulart , E. B. Gordon , A. Ritsch , C. Jäger , M. Rastogi , W. Salvenmoser , Th. Henning , P. Scheier

We have obtained spatially resolved near-infrared spectroscopy of the Venus nightside on 15 nights over three observing seasons. We use the depth of the CO absorption band at 2.3 microns to map the two-dimensional distribution of CO across…

Earth and Planetary Astrophysics · Physics 2015-05-28 Daniel V. Cotton , Jeremy Bailey , D. Crisp , V. S. Meadows