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Angular and Temperature-related Specific Features of the Interaction between Light and Heavy Holes in Weakly Doped p-Ge:Ga at Low Temperatures

The microwave low temperature magnetoresistivity of the low doped (nondegenerated) p-Ge was investigated with the use of the electron spin resonance technique. This technique permits to detect the derivative of the microwave absorption with respect to magnetic field and its change with this field. I...

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Bibliographic Details
Published in:Journal of physics. Conference series 2012-01, Vol.376 (1), p.12015-6
Main Authors: Veinger, A I, Zabrodskii, A G, Tisnek, T V, Goloshchapov, S I
Format: Article
Language:English
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Summary:The microwave low temperature magnetoresistivity of the low doped (nondegenerated) p-Ge was investigated with the use of the electron spin resonance technique. This technique permits to detect the derivative of the microwave absorption with respect to magnetic field and its change with this field. In our case, this change is proportional to the magnetoconductivity of the sample under investigation. Because of the averaging time of the effective masses of the light and heavy holes is much more then microwave frequency (10 GHz), this method permits to investigate the reaction of the each kind of the holes on the magnetic field separately. The experimental results are compared with the theory of the classical magnetoresistivity effect.
ISSN:1742-6596
1742-6588
1742-6596
DOI:10.1088/1742-6596/376/1/012015