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Confined Electrons and Photons

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Cover of 'Confined Electrons and Photons'

Table of Contents

  1. Altmetric Badge
    Book Overview
  2. Altmetric Badge
    Chapter 1 Confined Electrons and Photons: A Summary
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    Chapter 2 Dynamics of Optical Excitations in Semiconductors
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    Chapter 3 Optical Transitions, Excitons, and Polaritons in Bulk and Low-Dimensional Semiconductor Structures
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    Chapter 4 Electron States in Biased Heterostructures
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    Chapter 5 Phonons and Electron-Phonon Interaction in Low-Dimensional Structures
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    Chapter 6 Excitonic Radiative Dynamics in Semiconductor Quantum Wells
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    Chapter 7 Superlattices and Quantum Wells in Organic Semiconductors: Excitons and Optical Nonlinearities
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    Chapter 8 Intersubband Transitions in Quantum Wells
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    Chapter 9 Principles of Solid State Electron Optics
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    Chapter 10 Atomic-Like Spectroscopy of Low-Dimensional Electron Systems
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    Chapter 11 Inelastic Scattering and Thermalization in Low Dimensional III-V Semiconductor Structures
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    Chapter 12 Synthesis and Spectroscopy of II–VI Quantum Dots: An Overview
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    Chapter 13 Prospects of High-Efficiency Quantum Boxes Obtained by Direct Epitaxial Growth
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    Chapter 14 Atoms in Cavities
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    Chapter 15 Controlling Spontaneous Emission and Optical Microcavities
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    Chapter 16 Spontaneous Emission Control in Semiconductor Microcavities
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    Chapter 17 Strong Coupling in Semiconductor Microcavities
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    Chapter 18 Localization of Light in Disordered and Periodic Dielectrics
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    Chapter 19 Photonic Bloch Waves and Photonic Band Gaps
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    Chapter 20 Light Emission in Photonic Crystal Micro-Cavities
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    Chapter 21 Semiconductor Nano-Structure Lasers: Fundamentals and Fabrications
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    Chapter 22 Quantum Well Optical Switching Devices
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    Chapter 23 High Efficiency, Narrow Spectrum Resonant Cavity Light Emitting Diodes
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    Chapter 24 Spontaneous Emission Control in Planar Structures: Er 3+ IN Si/SiO 2 Microcavities
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    Chapter 25 Vacuum Field Rabi Splitting in a Semiconductor Microcavity
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    Chapter 26 Impurity Modes in One Dimensional Periodic Systems: The Transition from Photonic Band Gaps to Microcavities
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    Chapter 27 Photonic Band Gap Calculations: Inward and Outward Integral Equations and the KKR Method
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    Chapter 28 Soliton — Polariton Interaction Near an Excitonic Resonance in Semiconductors
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    Chapter 29 Dynamics of Excitons and Electron-Hole Plasma Confined in Semiconductor Nanocrystals
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    Chapter 30 Coupled Quantum Wells for Optical Modulation
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    Chapter 31 In-Plane Electro-Optic Effect in a Quantum Well
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    Chapter 32 Aspects of Polaritons
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    Chapter 33 Interband Optical Transitions in Extremely Anisotropic Semiconductors
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    Chapter 34 Effect of Retarded Interaction on the Exciton Spectrum in One-Dimensional and Two-Dimensional Crystals
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    Chapter 35 On the Exciton Luminescence at Low Temperatures: Importance of the Polariton Viewpoint
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    Chapter 36 Spatial and Spectral Features of Polariton Fluorescence
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    Chapter 37 Studies of exciton localization in quantum-well structures by nonlinear-optical techniques
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    Chapter 38 Excitonic optical nonlinearity and exciton dynamics in semiconductor quantum dots
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    Chapter 39 Very large optical nonlinearity of semiconductor microcrystallites
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    Chapter 40 Spontaneous Emission Probabilities at Radio Frequencies
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    Chapter 41 Inhibited Spontaneous Emission in Solid-State Physics and Electronics
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    Chapter 42 Inhibited Spontaneous Emission
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    Chapter 43 Cavity Quantum Electrodynamics
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    Chapter 44 Cavity Quantum Electrodynamics at Optical Frequencies
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    Chapter 45 Physics and Device Applications of Optical Microcavities
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    Chapter 46 Optical Processes in Microcavities
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    Chapter 47 Photon Number Squeezed States in Semiconductor Lasers
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    Chapter 48 Photonic band-gap structures
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    Chapter 49 Applications of Photonic Band Gap Structures
Attention for Chapter 40: Spontaneous Emission Probabilities at Radio Frequencies
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Chapter title
Spontaneous Emission Probabilities at Radio Frequencies
Chapter number 40
Book title
Confined Electrons and Photons
Published by
Springer, Boston, MA, January 1995
DOI 10.1007/978-1-4615-1963-8_40
Book ISBNs
978-1-4613-5807-7, 978-1-4615-1963-8
Authors

E. M. Purcell, Purcell, E. M.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 947 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
United States 14 1%
Germany 13 1%
United Kingdom 12 1%
Denmark 4 <1%
France 4 <1%
Canada 4 <1%
Australia 3 <1%
Japan 3 <1%
Spain 2 <1%
Other 9 <1%
Unknown 879 93%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 347 37%
Researcher 167 18%
Student > Master 100 11%
Student > Bachelor 54 6%
Student > Doctoral Student 40 4%
Other 104 11%
Unknown 135 14%
Readers by discipline Count As %
Physics and Astronomy 521 55%
Engineering 131 14%
Chemistry 50 5%
Materials Science 49 5%
Computer Science 9 <1%
Other 29 3%
Unknown 158 17%