• Produktbild: Spectroscopy of Semiconductor Microstructures
  • Produktbild: Spectroscopy of Semiconductor Microstructures
Band 206

Spectroscopy of Semiconductor Microstructures

Aus der Reihe NATO Science Series B:

49,99 €

inkl. gesetzl. MwSt., Versandkostenfrei


Beschreibung

Produktdetails

Einband

Taschenbuch

Erscheinungsdatum

03.03.2013

Abbildungen

XIV, 667 p. 215 illus.

Herausgeber

Gerhard Fasol + weitere

Verlag

Springer Us

Seitenzahl

667

Maße (L/B/H)

25,4/17,8/3,7 cm

Gewicht

1264 g

Auflage

1989

Sprache

Englisch

ISBN

978-1-4757-6567-0

Beschreibung

Produktdetails

Einband

Taschenbuch

Erscheinungsdatum

03.03.2013

Abbildungen

XIV, 667 p. 215 illus.

Herausgeber

Verlag

Springer Us

Seitenzahl

667

Maße (L/B/H)

25,4/17,8/3,7 cm

Gewicht

1264 g

Auflage

1989

Sprache

Englisch

ISBN

978-1-4757-6567-0

Herstelleradresse

Springer-Verlag GmbH
Tiergartenstr. 17
69121 Heidelberg
DE

Email: GPSR Kontakt

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  • Produktbild: Spectroscopy of Semiconductor Microstructures
  • Produktbild: Spectroscopy of Semiconductor Microstructures
  • MBE Growth of Custom-Designed III–V Semiconductor Microstructures Scaled to the Physical Limit: Ultrathin Layer Superlattices and Monolayer Doping.- MOCVD — Grown Atomic Layer Superlattices.- Aspects of the Growth of InP/InGaAs Multi-Quantum Well Structures by Gas Source Molecular Beam Epitaxy.- Quantum Wires and Related Superstructures.- Spectroscopy of One-Dimensional Electronic Systems.- Electrons in Lateral Microstructures on Indium Antimonide.- Ballistic Transport in Quasi-One-Dimensional Structures.- Phonons in Superlattices.- Resonance Raman Scattering in Short Period GaAs — AlAs Superlattices.- Phonons and Optical Properties of Si / Ge Superlattices.- Characterisation of Ge — Si Interfaces and Ultra-thin Ge layers by Raman Scattering.- Phonons of Ideal (001) Superlattices: Application to Si / Ge.- Calculations of Phonons in Superlattices. The Ge / Si Superlattices along [001].- Structural and Optical Properties of Periodic Fibonacci Superlattices.- Raman Scattering from Phonons in Quasiperiodic Superlattices Based on Generalizations of the Fibonacci Sequence.- Can We Tune the Band Offset at Semiconductor Heterojunctions?.- Optical Properties and Band Alignments of III–V Heterostructures.- Indirect GaAs/AIAs Superlattices.- Optical Testing of Probability Densities in Quantum Well Eigenstates.- Photoemission from A1GaAs/GaAs Heterojunctions and Quantum Wells under Negative Electron Affinity Conditions.- Wannier — Stark Quantization and Bloch Oscillator in Biased Semiconductor Superlattices.- Electronic Raman Scattering in Photoexcited Quantum Wells: Field Effects and Charge-Density Domains.- Linear and Nonlinear Optics of Confined Excitons.- Magneto-Excitons in GaAs/GaAlAs Quantum Wells.- Anisotropy of Magneto-Optical Properties of (Al, Ga)As QuantumWells.- Magneto-Optical Study of Miniband Dispersion and Excitonic Effects in GaAs/GaAIAs Superlattices.- Magnetotunnelling in Semiconductor Microstructures.- Properties of a Dense Quasi Two Dimensional Electron-Hole Gas at High Magnetic Fields.- Magneto — Absorption in a Hg1?xXMnxTe — CdTe Superlattice: Evidence of the Exchange Interaction in a Semimagnetic Semiconducting Superlattice.- Polaron Coupling in GaAs — GaA1As Heterostructures observed by Cyclotron and Magnetophonon Resonance.- Cyclotron Resonance of 2D Electron Systems in Intentionally Doped A1GaAs/GaAs Quantum Wells and Heterostructures.- Magnetophonon Resonance Condition in Quasi One- and Two-Dimensional Electron Systems.- Interaction of Surface Acoustic Waves with Two-Dimensional Electron Systems in GaAs/AlGaAs Heterojunctions.- Screening of Impurities in the Quantum Hall Regime.- Ultrafast Luminescence Studies of Tunneling in Semiconductor Microstructures.- Monte-Carlo Simulation of Femtosecond Carrier Relaxation in Semiconductor Quantum Wells.- Ultrafast Transport Measurements in Bulk Semiconductors and Tunneling Devices Using Electro-Optic Sampling.- Optical Transport Experiments in Heterostructures.- Optical Properties of GaAs / AlAs Superlattices.- Hot Phonons in Microstructures.- Contributors.- Participants.