Published 1993 | Version v1
Miscellaneous

A new computational method for simulation of charge transport in semiconductor radiation detectors

Creators

  • 1. Institute of Applied Physics, Academy of Sciences of the Republic of Moldova, Chisinau, (Moldova, Republic of)

Description

An effective computational method for simulation of charge transport in semiconductor radiation detectors is the purpose of the present work. Basic equations for analysis include (1) Poisson's equations, (2) continuity equation for electrons and holes, (3) rate equations for deep levels, (4) current equation for electrons and holes and (5) boundary conditions. The system of equations is discretized and equidistant space and time grids is brought. The nonlinearity of the problem is overcome by using Newton-Raphson iteration scheme. Instead of solving a nonlinear boundary problem we resolve a linear matrix equation. Our computation procedure becomes very efficient using a sparse matrix. The computed program allows to calculate the charge collection efficiency and transient response for arbitrary electric fields when trapping and detrapping effects are present. The earlier literature results are reproduced. (Author)

Part of:
National Physics Conference

Additional details

Publishing Information

Publisher
Institute of Atomic Physics. Information and Documentation Office.
Imprint Place
Bucharest (Romania)
Imprint Title
National Physics Conference
Imprint Pagination
160 p.
Journal Page Range
p. 54.

Conference

Title
National Physics Conference.
Dates
13-15 Oct 1993.
Place
Constanta (Romania).

INIS

Country of Publication
Romania
Country of Input or Organization
Romania
INIS RN
25031874
Subject category
S46: INSTRUMENTATION RELATED TO NUCLEAR SCIENCE AND TECHNOLOGY;
Resource subtype / Literary indicator
Conference, Non-conventional Literature
Descriptors DEI
CHARGE TRANSPORT; COMPUTER CALCULATIONS; NEWTON METHOD; SEMICONDUCTOR DETECTORS; SIMULATION
Descriptors DEC
CALCULATION METHODS; ITERATIVE METHODS; MEASURING INSTRUMENTS; RADIATION DETECTORS

Optional Information