TY - JOUR
T1 - Hot electron noise in n-type GaAs in crossed electric and magnetic fields
AU - Ciccarello, Francesco
AU - Zarcone, Michelangelo
PY - 2006
Y1 - 2006
N2 - A Monte Carlo analysis of hot electron transport properties of bulk \textit{n}-type GaAs in crossed electric and magnetic fields is presented. %Magnetic field strengths allowing negligible quantum effects in the electron dynamics during free flights are considered. Effects due to the nonparabolicity of bands are properly taken into account by means of a local parabolic approximation. Stochastic properties of electron transport are analyzed by computing the velocity auto-correlation function and the spectral density of fluctuations. It is shown how the presence of the magnetic field is able to deeply modify electron noise up to high electric field strengths. The resulting features of the velocity auto-correlation function as well as of the spectrum of fluctuations reveal signatures of nonparabolicity and nonlinearity.
AB - A Monte Carlo analysis of hot electron transport properties of bulk \textit{n}-type GaAs in crossed electric and magnetic fields is presented. %Magnetic field strengths allowing negligible quantum effects in the electron dynamics during free flights are considered. Effects due to the nonparabolicity of bands are properly taken into account by means of a local parabolic approximation. Stochastic properties of electron transport are analyzed by computing the velocity auto-correlation function and the spectral density of fluctuations. It is shown how the presence of the magnetic field is able to deeply modify electron noise up to high electric field strengths. The resulting features of the velocity auto-correlation function as well as of the spectrum of fluctuations reveal signatures of nonparabolicity and nonlinearity.
KW - Boltzmann equation ; Monte Carlo methods
KW - noise
KW - Boltzmann equation ; Monte Carlo methods
KW - noise
UR - http://hdl.handle.net/10447/4929
UR - https://aip.scitation.org/doi/10.1063/1.2201694
M3 - Article
VL - 99
SP - 1
EP - 6
JO - Journal of Applied Physics
JF - Journal of Applied Physics
SN - 0021-8979
ER -