Results 111 to 120 of about 225 (169)
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Self-diffusion in indium antimonide and gallium antimonide

Acta Metallurgica, 1957
Self-diffusion measurements have been made in the semi-conducting interrnetallic compounds InSb and GaSb. The material was single crystal or slightly polycrystalline. A tracer technique was used, in which layer's were removed from the crystal progressively and the residual activity in the crystal was counted after each section was taken.
Fred H Eisen, C.Ernest Birchenall
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Superconducting Gallium Antimonide

Science, 1965
A metallic phase of gallium antimonide, obtained by quenching at approximately 120 kilobars to 77°K and then releasing pressure, is a superconductor. The transition temperature depends on the annealing conditions; for samples annealed at 250°C under pressure before quenching, it is 4.24° ± 0.10°K, and H c2 (the ...
D B, McWhan   +3 more
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Superconducting Indium Antimonide

Science, 1963
Attempts to obtain the metallic phase of InSb by the use of a Teflon cell and a 40-centistroke silicone oil as the pressure cell and transmitting medium respectively, in a piston-cylinder apparatus failed. Work done at the University of California, Los Angeles, indicated that the metallic form of InSb could be recovered at liquid-nitrogen temperatures.
S, Geller, D B, McWhan, G W, Hull
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Chains, planes, and antimonides

Coordination Chemistry Reviews, 2002
Abstract Ternary rare-earth main-group pnictides RE x M y Pn z where M is a Group 13 or 14 element and Pn is P, As, Sb, or Bi form an emerging class of solid state compounds that frequently display extensive homoatomic MM and PnPn bonding in addition to heteroatomic MPn bonding in their anionic substructures.
Allison Mills   +2 more
exaly   +2 more sources

Synthesis and properties of antimonide nanowires

Nanotechnology, 2013
Antimonide semiconductors are suitable for low-power electronics and long-wavelength optoelectronic applications. In recent years research on antimonide nanowires has become a rapidly growing field, and nano-materials have promising applications in fundamental physics research, for tunnel field-effect transistors, and long-wavelength detectors. In this
B, Mattias Borg, Lars-Erik, Wernersson
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Photoreflectance of indium antimonide

Physics of the Solid State, 2016
The photoreflectance spectra of n-InSb layers were measured using photomodulation Fourier transform infrared spectroscopy. The samples were grown by molecular beam epitaxy on heavily doped n +-InSb(001) substrates annealed under different conditions. The strength of the near-surface electric field was determined from the
O. S. Komkov   +6 more
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Berry phase appearance in deformed indium antimonide and gallium antimonide whiskers

Computational Problems of Electrical Engineering, 2019
The influence of deformation on magnetoresistance features in indium antimonide and gallium antimonide whiskers of n-type conductivity with different doping concentration in the vicinity to the metal-insulator transition (MIT) has been investigated in the temperature range 4.2 – 50 K and the magnetic field 0 – 14 T.
Anatoliy Druzhynin   +3 more
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Superconductivity of Metallic Aluminum Antimonide

Science, 1967
The high-pressure metallic phase of aluminum antimonide is superconducting [critical temperature T c (P ∼125 kilobars) = 2.8° ± 0.2°K]. This transition temperature is significantly lower than the transition temperature of metallic germanium under an equivalent high pressure.
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Superconductivity in Indium Antimonide

Physical Review, 1964
Two samples of the metallic phase of indium antimonide were stabilized at atmospheric pressure by cooling semiconductor grade material from 100\ifmmode^\circ\else\textdegree\fi{}C to 77\ifmmode^\circ\else\textdegree\fi{}K at a pressure of 27 kbars, and then removing the pressure. Measurements of the magnetic moment of these samples down to 1.1\ifmmode^\
T. F. Stromberg, C. A. Swenson
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Arsenides and Antimonides of Niobium

Nature, 1964
THE phase relationships in the systems niobium–arsenic and niobium–antimony have been studied by X-ray methods. Density determinations and magnetic susceptibility measurements have been carried out.
SIGRID FURUSETH, ARNE KJEKSHUS
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