Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Neutron Transmutation and Hydrogenation Study of Hg₁₋xCdxTe

View through CrossRef
Anomalous Hall behavior of HgCdTe refers to a "double cross-over" feature of the Hall coefficient in p-type material, or a peak in the Hall mobility or Hall coefficient in n-type material. A magnetoconductivity tensor approach was utilized to identify presence of two electrons contributing to the conduction as well as transport properties of each electron in the material. The two electron model for the mobility shows that the anomalous Hall behavior results from the competition of two electrons, one in the energy gap graded region near the CdZnTe/HgCdTe interface with large band gap and the other in the bulk of the LPE film with narrow band gap. Hg0.78Cd0.22Te samples grown by LPE on CdZnTe(111B)-oriented substrates were exposed to various doses of thermal neutrons (~1.7 x 1016 - 1.25 x 1017 /cm2) and subsequently annealed at ~220oC for ~24h in Hg saturated vapor to recover damage and reduce the presence of Hg vacancies. Extensive Magnetotransport measurements were performed on these samples. SIMS profile for impurities produced by neutron irradiation was also obtained. The purpose for this study is to investigate the influence of neutron irradiation on this material as a basis for further study on HgCdTe74Se. The result shows that total mobility is observed to decrease with increased neutron dose and can be fitted by including a mobility inverse proportional to neutron dose. Electron introduction rate of thermal neutron is much smaller than that of fission neutrons. Total recovering of the material is suggested to have longer time annealing. Using Kane's model, we also fitted carrier concentration change at low temperature by introducing a donor level with activation energy changing with temperature. Results on Se diffusion in liquid phase epitaxy (LPE) grown HgCdTe epilayers is reported. The LPE Hg0.78Cd0.22Te samples were implanted with Se of 2.0×1014/cm2 at 100keV and annealed at 350-450oC in mercury saturated vapor. Secondary ions mass spectrometry (SIMS) profiles were obtained for each sample. From a Gaussian fit we find that the Se diffusion coefficient DSe is about one to two orders of magnitude smaller than that of arsenic. The as-implanted Se distribution is taken into account in case of small diffusion length in Gaussian fitting. Assuming a Te vacancy based mechanism, the Arrhenius relationship yields an activation energy 1.84eV. Dislocations introduced in HgCdTe materials result in two energy levels, where one is a donor and one is an acceptor. Hydrogenation treatment can effectively neutralize these dislocation defect levels. Both experimental results and theoretical calculation show that the mobility due to dislocation scattering remains constant in the low temperature range (<77K), and increases with temperature between 77K and 150K. Dislocation scattering has little effect on electrical transport properties of HgCdTe with an EPD lower than 107/cm2. Dislocations may have little effect on carrier concentration for semiconductor material with zinc blende structure due to self compensation.
University of North Texas Libraries
Title: Neutron Transmutation and Hydrogenation Study of Hg₁₋xCdxTe
Description:
Anomalous Hall behavior of HgCdTe refers to a "double cross-over" feature of the Hall coefficient in p-type material, or a peak in the Hall mobility or Hall coefficient in n-type material.
A magnetoconductivity tensor approach was utilized to identify presence of two electrons contributing to the conduction as well as transport properties of each electron in the material.
The two electron model for the mobility shows that the anomalous Hall behavior results from the competition of two electrons, one in the energy gap graded region near the CdZnTe/HgCdTe interface with large band gap and the other in the bulk of the LPE film with narrow band gap.
Hg0.
78Cd0.
22Te samples grown by LPE on CdZnTe(111B)-oriented substrates were exposed to various doses of thermal neutrons (~1.
7 x 1016 - 1.
25 x 1017 /cm2) and subsequently annealed at ~220oC for ~24h in Hg saturated vapor to recover damage and reduce the presence of Hg vacancies.
Extensive Magnetotransport measurements were performed on these samples.
SIMS profile for impurities produced by neutron irradiation was also obtained.
The purpose for this study is to investigate the influence of neutron irradiation on this material as a basis for further study on HgCdTe74Se.
The result shows that total mobility is observed to decrease with increased neutron dose and can be fitted by including a mobility inverse proportional to neutron dose.
Electron introduction rate of thermal neutron is much smaller than that of fission neutrons.
Total recovering of the material is suggested to have longer time annealing.
Using Kane's model, we also fitted carrier concentration change at low temperature by introducing a donor level with activation energy changing with temperature.
Results on Se diffusion in liquid phase epitaxy (LPE) grown HgCdTe epilayers is reported.
The LPE Hg0.
78Cd0.
22Te samples were implanted with Se of 2.
0×1014/cm2 at 100keV and annealed at 350-450oC in mercury saturated vapor.
Secondary ions mass spectrometry (SIMS) profiles were obtained for each sample.
From a Gaussian fit we find that the Se diffusion coefficient DSe is about one to two orders of magnitude smaller than that of arsenic.
The as-implanted Se distribution is taken into account in case of small diffusion length in Gaussian fitting.
Assuming a Te vacancy based mechanism, the Arrhenius relationship yields an activation energy 1.
84eV.
Dislocations introduced in HgCdTe materials result in two energy levels, where one is a donor and one is an acceptor.
Hydrogenation treatment can effectively neutralize these dislocation defect levels.
Both experimental results and theoretical calculation show that the mobility due to dislocation scattering remains constant in the low temperature range (<77K), and increases with temperature between 77K and 150K.
Dislocation scattering has little effect on electrical transport properties of HgCdTe with an EPD lower than 107/cm2.
Dislocations may have little effect on carrier concentration for semiconductor material with zinc blende structure due to self compensation.

Related Results

A Method for Determining the Porosity of Pulsed Neutron by Combining Gamma Energy and Time Spectrum
A Method for Determining the Porosity of Pulsed Neutron by Combining Gamma Energy and Time Spectrum
Pulsed-neutron gamma energy spectroscopy and neutron lifetime measurement systems enable the evaluation of the elemental content, saturation. And recent studies have demonstrated t...
Study of coded source neutron imaging based on a compact accelerator
Study of coded source neutron imaging based on a compact accelerator
Compact accelerator based neutron source has lower cost and better flexibility than nuclear reactor. Neutron imaging using such a neutron source has attracted more and more attenti...
Determination of Coal Ash Content by Neutron-Neutron Logging
Determination of Coal Ash Content by Neutron-Neutron Logging
Abstract The research is aimed at assessing the possibility of studying the ash content of coal seams using neutron-neutron logging in coal exploration wells drilled...
A New Method of Porosity Determination by D-T Neutron Generator and Dual CLYC Detector
A New Method of Porosity Determination by D-T Neutron Generator and Dual CLYC Detector
Porosity is one of the essential parameters in conventional oil and gas reservoir evaluation, as well as plays an important role in the calculation of formation saturation and rese...
A Novel Gamma-Thermal Neutron Evaluating Gas Saturation Method Using Pulsed Neutron Logging Tool With Dual-CLYC
A Novel Gamma-Thermal Neutron Evaluating Gas Saturation Method Using Pulsed Neutron Logging Tool With Dual-CLYC
In our previous research which has published in 62th SPWLA symposium, a numerical simulation method was proposed which about the double particle detector CLYC (Cs2LiYCl6:CE) to get...
HYDROGENATION TECHNOLOGY AND CHEMISTRY OF COTTONSEED OIL AND FATS
HYDROGENATION TECHNOLOGY AND CHEMISTRY OF COTTONSEED OIL AND FATS
The presented research describes the hydrogenation technology and the chemistry of vegetable oils and fats using powder and stationary catalysts. The hydrogenation technology proce...
Neutron and Photon Dose Rates in a D-T Neutron Generator Facility: MCNP Simulations and Experiments
Neutron and Photon Dose Rates in a D-T Neutron Generator Facility: MCNP Simulations and Experiments
Abstract The deuterium-tritium neutron generator is a common neutron source for fast neutron activation analysis. The 14.1 MeV neutrons emitted from a deuterium-tritium n...

Back to Top