The cross section for bremsstrahlung photon emission in solar flares is, in general, a function of the angle theta between the incoming electron and the outgoing photon directions. Thus the electron spectrum required to produce a given photon spectrum is a function of this angle, which is related to the position of the flare on the solar disk and the direction(s) of the precollision electrons relative to the local solar vertical. We compare mean electron flux spectra for the flare of 2002 August 21 using cross sections for parameterized ranges of the angle theta. Implications for the shape of the mean source electron spectrum and for the injected power in nonthermal electrons are discussed
Aims.We investigate the signature of the photospheric albedo contribution in solar flare hard X-ray...
We present and analyze the first high-resolution hard X-ray spectra from a solar flare observed in b...
By inverting the Reuven Ramaty High Energy Solar Spectroscopic Imager (RHESSI) hard X-ray photon spe...
The cross section for bremsstrahlung photon emission in solar flares is, in general, a function of t...
The cross-section for bremsstrahlung photon emission in solar flares is in general a function of the...
Although both electron-ion and electron-electron bremsstrahlung contribute to the hard X-ray emissio...
Radiation of energies from 10 KeV to greater than 10 MeV has been observed during solar flares, and ...
In this thesis I examine the role of Compton back-scatter of solar flare Hard X-rays, also known as ...
The angular distribution of electrons accelerated in solar flares is a key parameter in the understa...
We investigate the signature of the photospheric albedo contribution in solar flare hard X-ray spect...
The Ramaty High Energy Solar Spectroscopic Imager (RHESSI) mission provides information on high reso...
Aims. The paper aims are to simulate steady-state distributions of electrons beams precipitating in ...
Kontar et al. (2004) have shown how to recover mean source electron spectra F(E) in solar flares thr...
<p><b>Aims</b>: We investigate the signature of the photospheric albedo contributi...
56-62Energy and angular distributions of flare electrons have been studied as function of height usi...
Aims.We investigate the signature of the photospheric albedo contribution in solar flare hard X-ray...
We present and analyze the first high-resolution hard X-ray spectra from a solar flare observed in b...
By inverting the Reuven Ramaty High Energy Solar Spectroscopic Imager (RHESSI) hard X-ray photon spe...
The cross section for bremsstrahlung photon emission in solar flares is, in general, a function of t...
The cross-section for bremsstrahlung photon emission in solar flares is in general a function of the...
Although both electron-ion and electron-electron bremsstrahlung contribute to the hard X-ray emissio...
Radiation of energies from 10 KeV to greater than 10 MeV has been observed during solar flares, and ...
In this thesis I examine the role of Compton back-scatter of solar flare Hard X-rays, also known as ...
The angular distribution of electrons accelerated in solar flares is a key parameter in the understa...
We investigate the signature of the photospheric albedo contribution in solar flare hard X-ray spect...
The Ramaty High Energy Solar Spectroscopic Imager (RHESSI) mission provides information on high reso...
Aims. The paper aims are to simulate steady-state distributions of electrons beams precipitating in ...
Kontar et al. (2004) have shown how to recover mean source electron spectra F(E) in solar flares thr...
<p><b>Aims</b>: We investigate the signature of the photospheric albedo contributi...
56-62Energy and angular distributions of flare electrons have been studied as function of height usi...
Aims.We investigate the signature of the photospheric albedo contribution in solar flare hard X-ray...
We present and analyze the first high-resolution hard X-ray spectra from a solar flare observed in b...
By inverting the Reuven Ramaty High Energy Solar Spectroscopic Imager (RHESSI) hard X-ray photon spe...