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Effective Electron Mass in Low-Dimensional Semiconductors

Produktform: E-Buch Text Elektronisches Buch in proprietärem


This book examines the effective electron mass in nanodevices, explaining changes in band structure of optoelectronic semiconductors, and offering insight into electronic behavior in doped semiconductors and nanostructures. Includes 200 problems and questions.

Verlag: Springer Berlin, 536 Seiten

Elektronisches Format: PDF

Erscheinungsdatum: 05.10.2012

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Thermoelectric Power in Nanostructured Materials

Strong Magnetic Fields

Produktform: E-Buch Text Elektronisches Buch in proprietärem


This is the first monograph which solely investigates the thermoelectric power in nanostrcutured materials under strong magnetic field (TPSM) in quantum confined nonlinear optical, III-V, II-VI, n-GaP, n-Ge, Te, Graphite, PtSb2, zerogap, II-V, Gallium Antimonide, stressed materials, Bismuth, IV-VI, lead germanium telluride, Zinc and Cadmium diphosphides, Bi2Te3, Antimony and carbon nanotubes, III-V, II-VI, IV-VI and HgTe/CdTe superlattices with graded interfaces and effective mass superlattices under magnetic quantization, the quantum wires and dots of the aforementiond superlattices by formulating the approprate respective carrier energy spectra which in turn control the quantum processes in quantum effect devices. The TPSM in macro, quantum wire and quantum dot superlattices of optoelectronic materials in the presence of external photo-excitation have also been studied on the basis of newly formulated electron dispersion laws. This monograph contains 150 open research problems which form the very core and are useful for PhD students and researchers in the fields of materials science, solid-state sciences, computational and theoretical nanoscience and technology, nanostructured thermodynamics and condensed matter physics in general in addition to the graduate courses on modern thermoelectric materials in various academic departments of many institutes and universities.

Verlag: Springer Berlin, 393 Seiten

Elektronisches Format: PDF

Erscheinungsdatum: 20.07.2010

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Heavily-Doped 2D-Quantized Structures and the Einstein Relation

Produktform: E-Buch Text Elektronisches Buch in proprietärem

Verlag: Springer International Publishing, 347 Seiten

Elektronisches Format: PDF

Erscheinungsdatum: 30.07.2014

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Debye Screening Length

Effects of Nanostructured Materials

Produktform: E-Buch Text Elektronisches Buch in proprietärem

Verlag: Springer International Publishing, 385 Seiten

Elektronisches Format: PDF

Erscheinungsdatum: 05.11.2013

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Fowler-Nordheim Field Emission

Effects in Semiconductor Nanostructures

Produktform: E-Buch Text Elektronisches Buch in proprietärem


Verlag: Springer Berlin, 338 Seiten

Elektronisches Format: PDF

Erscheinungsdatum: 13.01.2012

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Debye Screening Length

Effects of Nanostructured Materials

Produktform: Buch / Einband - fest (Hardcover)

Verlag: Springer International Publishing, Auflage 1, 385 Seiten

Erscheinungsdatum: 14.11.2013

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Heavily-Doped 2D-Quantized Structures and the Einstein Relation

Produktform: Buch / Einband - fest (Hardcover)

Verlag: Springer International Publishing, Auflage 1, 347 Seiten

Erscheinungsdatum: 11.08.2014

106,99 € inkl. MwSt.
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Thermoelectric Power in Nanostructured Materials

Strong Magnetic Fields

Produktform: Buch / Einband - flex.(Paperback)


This is the first monograph which solely investigates the thermoelectric power in nanostrcutured materials under strong magnetic field (TPSM) in quantum confined nonlinear optical, III-V, II-VI, n-GaP, n-Ge, Te, Graphite, PtSb2, zerogap, II-V, Gallium Antimonide, stressed materials, Bismuth, IV-VI, lead germanium telluride, Zinc and Cadmium diphosphides, Bi2Te3, Antimony and carbon nanotubes, III-V, II-VI, IV-VI and HgTe/CdTe superlattices with graded interfaces and effective mass superlattices under magnetic quantization, the quantum wires and dots of the aforementiond superlattices by formulating the approprate respective carrier energy spectra which in turn control the quantum processes in quantum effect devices. The TPSM in macro, quantum wire and quantum dot superlattices of optoelectronic materials in the presence of external photo-excitation have also been studied on the basis of newly formulated electron dispersion laws. This monograph contains 150 open research problems which form the very core and are useful for PhD students and researchers in the fields of materials science, solid-state sciences, computational and theoretical nanoscience and technology, nanostructured thermodynamics and condensed matter physics in general in addition to the graduate courses on modern thermoelectric materials in various academic departments of many institutes and universities.

Verlag: Springer Berlin, Auflage 1, 393 Seiten

Erscheinungsdatum: 05.09.2012

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Debye Screening Length

Effects of Nanostructured Materials

Produktform: Buch / Einband - flex.(Paperback)

Verlag: Springer International Publishing, Auflage 1, 385 Seiten

Erscheinungsdatum: 23.08.2016

160,49 € inkl. MwSt.
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Thermoelectric Power in Nanostructured Materials

Strong Magnetic Fields

Produktform: Buch / Einband - fest (Hardcover)


This is the first monograph which solely investigates the thermoelectric power in nanostrcutured materials under strong magnetic field (TPSM) in quantum confined nonlinear optical, III-V, II-VI, n-GaP, n-Ge, Te, Graphite, PtSb2, zerogap, II-V, Gallium Antimonide, stressed materials, Bismuth, IV-VI, lead germanium telluride, Zinc and Cadmium diphosphides, Bi2Te3, Antimony and carbon nanotubes, III-V, II-VI, IV-VI and HgTe/CdTe superlattices with graded interfaces and effective mass superlattices under magnetic quantization, the quantum wires and dots of the aforementiond superlattices by formulating the approprate respective carrier energy spectra which in turn control the quantum processes in quantum effect devices. The TPSM in macro, quantum wire and quantum dot superlattices of optoelectronic materials in the presence of external photo-excitation have also been studied on the basis of newly formulated electron dispersion laws. This monograph contains 150 open research problems which form the very core and are useful for PhD students and researchers in the fields of materials science, solid-state sciences, computational and theoretical nanoscience and technology, nanostructured thermodynamics and condensed matter physics in general in addition to the graduate courses on modern thermoelectric materials in various academic departments of many institutes and universities.

Verlag: Springer Berlin, Auflage 1, 393 Seiten

Erscheinungsdatum: 31.07.2010

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