Monte Carlo simulations of nuclear de-excitation gamma-ray line spectra from solar flares
暂无分享,去创建一个
[1] S. Szpigel,et al. FLUKA Simulations of Pion Decay Gamma-Radiation from Energetic Flare Ions , 2020, Solar Physics.
[2] C. G. Giménez de Castro,et al. Self-consistent Modeling of Gamma-ray Spectra from Solar Flares with the Monte Carlo Simulation Package FLUKA , 2019, Solar Physics.
[3] P. W. Chin,et al. Overview of the FLUKA code , 2014, ICS 2014.
[4] A. MacKinnon,et al. Properties of Energetic Ions in the Solar Atmosphere from γ-Ray and Neutron Observations , 2011, 1110.2432.
[5] M. Asplund,et al. The chemical composition of the Sun , 2009, 0909.0948.
[6] R. Murphy,et al. NUCLEAR GAMMA-RAY DE-EXCITATION LINES AND CONTINUUM FROM ACCELERATED-PARTICLE INTERACTIONS IN SOLAR FLARES , 2009 .
[7] Arjan J. Koning,et al. TALYS: Comprehensive Nuclear Reaction Modeling , 2005 .
[8] Reuven Ramaty,et al. Nuclear Deexcitation Gamma-Ray Lines from Accelerated Particle Interactions , 2001 .
[9] Eugene H. Avrett,et al. Structure of the solar chromosphere. III. Models of the EUV brightness components of the quiet sun , 1981 .
[10] Richard E. Lingenfelter,et al. Nuclear gamma-rays from energetic particle interactions. , 1979 .
[11] Richard E. Lingenfelter,et al. Using Gamma-Ray and Neutron Emission to Determine Solar Flare Accelerated Particle Spectra and Composition and the Conditions within the Flare Magnetic Loop , 2007 .