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Titlebook: Microcavities and Photonic Bandgaps: Physics and Applications; John Rarity,Claude Weisbuch Book 1996 Kluwer Academic Publishers 1996 Plana

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Strategies for the Fabrication of Photonic Microstructures in Semiconductorsenges of fabricating photonic microstructures. While the greater difficulties of realising three-dimensional structures are emphasized, the opportunities for near-future device developments based on two-dimensional photonic microstructures are also recognised.
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Bound Modes of Two-Dimensional Photonic Crystal Waveguidesh the electromagnetic mode density enables the channelling of spontaneous emission into one or a few electromagnetic modes, and is attractive for enhancing the emission rate from light emitting diodes, and in achieving low threshold highly efficient operation in micro-cavity lasers [3].
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Book 1996some time ago, it is only recently that they have emerged, due to advances in both atomic physics and in fabrication techniques, be it on the high-quality dielectric mirrors required for high-finesse Fabry­ Perot resonators or in semiconductor multilayer deposition methods. Initially the principles
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NATO Science Series E:http://image.papertrans.cn/m/image/633128.jpg
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https://doi.org/10.1007/978-94-009-0313-5Planar; crystal; laser; semiconductor; semiconductors
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Magnetic and Electric Field Effects in Semiconductor Quantum Microcavity Structures number of phenomena are described including marked increase (decrease) of the vacuum Rabi coupling in external magnetic (electric) field due to the increased (decreased) exciton oscillator strength, exciton Zeeman splitting, and unusual linewidth narrowing effects attributed to motional narrowing.
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Order of Magnitude Enhanced Spontaneous Emission from Room-Temperature Bulk GaAsated at the same below-transparency density 2 or 3 mm away in the same layer of bulk GaAs but with most of the top mirror etched away. It is a very surprising cavity QED effect that 300K bulk-GaAs carriers can decay radiatively by enhanced spontaneous emission better than an atomic dipole!
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Electromagnetic Study of Photonic Band Structures and Anderson Localizationystal is periodic or not. For a periodic crystal, the classical methods used in the numerical study of diffraction gratings [1,2,3] can be used while the study of doped crystal requires more complicated theories, dealing with disordered structures. Other kind of theories, for instance the plane wave method [4] have been used in this context.
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978-94-010-6626-6Kluwer Academic Publishers 1996
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