LUMINOSITY ENHANCEMENT FACTOR FOR THERMAL COMPTONIZATION AND THE ELECTRON-ENERGY BALANCE

被引:67
作者
DERMER, CD
LIANG, EP
CANFIELD, E
机构
[1] UNIV CALIF BERKELEY,BERKELEY SPACE SCI LAB,BERKELEY,CA 94720
[2] UNIV CALIF LAWRENCE LIVERMORE NATL LAB,DEPT PHYS,LIVERMORE,CA 94550
关键词
PLASMAS; RADIATION MECHANISMS;
D O I
10.1086/169770
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Comptonization of soft photons by hot thermal electrons is an important cooling mechanism governing the electron energy balance in astrophysical plasmas. We treat thermal Comptonization in terms of the luminosity enhancement factor-eta, which gives the average change in energy of a photon between injection into and escape from a scattering medium. The region in which the photon scatters is characterized by the dimensionless electron temperature-theta = k(T)/m(e)C2, Thomson depth tau-T, and geometry. We derive an approximate expression for eta given by [GRAPHICS] where P = 1 - exp (-tau-T), A = 1 + 4-theta + 16-theta-2, and chi = hv/m(e)c2 is the photon energy at injection. Equation (1), with tau-T replaced by an effective scattering depth tau-eff(theta, tau-T), is used to fit Monte Carlo results for eta at relativistic temperatures in three geometries: a point source of photons located at the center of a sphere; a uniform source of photons distributed throughout the volume of a sphere; and a uniform source of photons distributed throughout the volume of a disk. Equation (1) also provides a good approximation to the nonrelativistic luminosity enhancement factor in the diffusion regime when - ln P/ln A is identified with the nonrelativistic photon spectral index-alpha derived by Sunyaev and Titarchuk. Integration of equation (1) over the bremsstrahlung source term provides a generalization of the result derived by Kompaneets for the enhancement of energy-loss rate of thermal electrons due to Comptonization of internally produced bremsstrahlung photons. Expressions for the electron energy-loss rate due to Comptonization of thermal cyclosynchrotron photons and nonthermal soft photons are also derived.
引用
收藏
页码:410 / 421
页数:12
相关论文
共 36 条