We present an ultrafast opacity calculator that we name HELIOS-K. It takes a line list as an input, computes the shape of each spectral line and provides an option for grouping an enormous number of lines into a manageable number of bins. We implement a combination of Algorithm 916 and Gauss-Hermite quadrature to compute the Voigt profile, write the code in CUDA and optimise the computation for graphics processing units (GPUs). We restate the theory of the k-distribution method and use it to reduce $\sim 10^5$ to $10^8$ lines to $\sim 10$ to $10^4$ wavenumber bins, which may then be used for radiative transfer, atmospheric retrieval and general circulation models. The choice of line-wing cutoff for the Voigt profile is a significant source ...
Context. In accelerating and supersonic media, understanding the interaction of photons with spectra...
In accelerating and supersonic media, the interaction of photons with spectral lines can be of ultim...
Despite of significant advances of computational power, line-by-line modeling of molecular absorptio...
Computing and using opacities is a key part of modeling and interpreting data of exoplanetary atmosp...
Context. Opacities of molecules in exoplanet atmospheres rely on increasingly detailed line-lists fo...
Context. Stellar spectra synthesis is essential for the characterization of potential planetary host...
Context. Stellar spectra synthesis is essential for the characterization of potential planetary host...
Context. Stellar spectra synthesis is essential for the characterization of potential planetary host...
We present the open-source radiative transfer code named HELIOS, which is constructed for studying e...
Modeling of stellar radiative intensities in various spectral passbands plays an important role in s...
Modeling of stellar radiative intensities in various spectral passbands plays an important role in s...
8siWe present EOS, a procedure for determining the outgoing longwave radiation (OLR) and top-of-atmo...
We present EOS, a procedure for determining the outgoing longwave radiation (OLR) and top-of-atmosph...
The calculation of expected spectral line strengths and profiles is a powerful tool for the analysis...
Context. In accelerating and supersonic media, understanding the interaction of photons with spectra...
Context. In accelerating and supersonic media, understanding the interaction of photons with spectra...
In accelerating and supersonic media, the interaction of photons with spectral lines can be of ultim...
Despite of significant advances of computational power, line-by-line modeling of molecular absorptio...
Computing and using opacities is a key part of modeling and interpreting data of exoplanetary atmosp...
Context. Opacities of molecules in exoplanet atmospheres rely on increasingly detailed line-lists fo...
Context. Stellar spectra synthesis is essential for the characterization of potential planetary host...
Context. Stellar spectra synthesis is essential for the characterization of potential planetary host...
Context. Stellar spectra synthesis is essential for the characterization of potential planetary host...
We present the open-source radiative transfer code named HELIOS, which is constructed for studying e...
Modeling of stellar radiative intensities in various spectral passbands plays an important role in s...
Modeling of stellar radiative intensities in various spectral passbands plays an important role in s...
8siWe present EOS, a procedure for determining the outgoing longwave radiation (OLR) and top-of-atmo...
We present EOS, a procedure for determining the outgoing longwave radiation (OLR) and top-of-atmosph...
The calculation of expected spectral line strengths and profiles is a powerful tool for the analysis...
Context. In accelerating and supersonic media, understanding the interaction of photons with spectra...
Context. In accelerating and supersonic media, understanding the interaction of photons with spectra...
In accelerating and supersonic media, the interaction of photons with spectral lines can be of ultim...
Despite of significant advances of computational power, line-by-line modeling of molecular absorptio...