Примеры использования Semiconductor physics на Английском языке и их переводы на Русский язык
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In semiconductor physics terminology,"the Fermi level is flat.
The institute was merged with the Semiconductor Physics Institute in 1964.
Condensed matter physics, nanostructures andnanostructured materials, semiconductor physics.
Department of semiconductor physics is the largest of all departments in IPM RAS.
Author of fundamental andapplied works in the field of semiconductor physics and semiconductor instruments.
Gunn stopped working on semiconductor physics in 1972, and pursued a number of different interests in his role as IBM Fellow.
Later in the same place,already professor Arushanov lectured on Materials and Semiconductor Physics 1986-1988.
Semiconductor physics and analytical methods of the solid surface: Auger electron spectroscopy and secondary ion mass spectrometry.
Her research work was concentrated in solid state physics, semiconductor physics, and surface physics.
The first course in semiconductor physics, he lectured in the Kishinev Polytechnic Institute named after Sergey Lazo in the period from 1970 to 1972.
During the discussions, Professor von Klitzing andMarcus have discussed the similarities of the hot conditions in the chemistry with similar effects in semiconductor physics.
Known scientist in the fields of radio and semiconductor physics, plasma physics, author of over 80 scientific papers published in leading national and international journals.
Its founding fathers were Dr Gunaras Kakaras, Head of Staff at the astronomical observatory, and Dr Libertas Klimka, Senior Research Associate at the Semiconductor Physics Institute and an avid enthusiast of ethnoculture.
His works are devoted to the theory of solids, semiconductor physics, optics, acoustics, quantum mechanics and quantum electronics, nuclear physics, nuclear reactor theory, quantum field theory, elementary particle physics, philosophical and methodological problems of physics. .
The main fields of the experimental research comprise molecular physics, genetics, molecular biology,microelectronics, semiconductor physics and solid state physics, development of new materials and accelerator technologies.
In 1953 he returned to RRE in Malvern, taking up a post as a Junior Government Research Fellow, where he worked on avalanche injection, carrier accumulation andrelated topics in experimental semiconductor physics.
Our correspondent met with Vladimir Izyaslavovich Gavrilenko, Vice-Director of the Institute for Physics of Microstructures of the Russian Academy of Science,Head of semiconductor physics department with this institute, USSR State Prize winner, professor, Doctor of physical and mathematical sciences.
His scientific works were devoted to the solid-state theory, semiconductor physics, optics, acoustics, quantum mechanics and quantum electronics, nuclear physics, theory of nuclear reactors, quantum field theory, elementary particle physics, philosophical and methodological issues of physics. .
The monograph"Non-destructive Analysis of Solids Surfaces by Ion Beams", published in the“Universitetskoye” publishing house,is used as a textbook for reading special courses at the Departments of Semiconductor Physics and Solid State Physics at the BSU.
Between 1963 and 1967 he was a researcher at the Laboratory of Semiconductor Physics Problems, SUL, whereas beginning with the year 1967 he led the Laboratory of Physics of Organic Semiconductors(later the Laboratory of Organic Solid State Physics and Molecular Electronics) at the Institute of Physical Energetics, Latvian Academy of Science.
One of the official opponents was the future academician of three Academies(New York, Azerbaijan and the International Academy of Ecoenergetics) andwell-known scientist in the field of semiconductor physics Maksud Aliev, he also became opponent and for Arushanov's doctoral dissertation"Transport Phenomena and the band structure of semiconductors A23B52 and A2B5 based on cadmium.
His research interests covered the physics of shock electromagnetic waves, the nonlinear effects in optics and propagation of light in turbid media,nonlinear high-frequency effects in bulk semiconductors, physics of inhomogeneous semiconductor structures and superlattices.
Solid-state physics and semiconductor electronics.
Physics of semiconductor heterostructures and superlattices.
Physics of semiconductor lasers on hot charges.
Physics of semiconductor nanostructures, optoelectronics, epitaxy, SiGe heterostructures, quantum dots.
He has made a significant contribution to the new scientific direction- physics of semiconductor superlattices.
An English translation M. A. Novikov(January 2004)"Oleg Vladimirovich Losev: Pioneer of Semiconductor Electronics," Physics of the Solid State, vol.
Under guidance of Associate Professor at the Department of Semiconductor Electronics and the Physics of Semiconductors Petr Lagov a new type of power diodes with optimized silicon pattern has been developed.
Starting from 1997-1998 the annualInternational Symposium« Nanophysics and Nanoelectronics" continues regular discussions on topical issues in such areas as the physics of semiconductor nanostructures, X-ray optics and scanning probe microscopy with the participation of all research groups in Russia, actively working in this field and with the participation of scientists from abroad.