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Titlebook: Quantum Optics of Confined Systems; Martial Ducloy,Daniel Bloch Book 1996 Kluwer Academic Publishers 1996 Laser.Optics.STEM.atomic physics

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Book 1996ly related to their own field, while presenting the basic concepts of these different fields through pedagogical Introductions. The audience comprised advanced students, postdocs and senior scientists, with a balanced participation of Atomic Physicists and Solid State Physicists, and had a truly int
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NATO Science Series E:http://image.papertrans.cn/q/image/781389.jpg
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https://doi.org/10.1007/978-94-009-1657-9Laser; Optics; STEM; atomic physics; basics; electrodynamics; microscopy; optoelectronics; semiconductor
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978-94-010-7241-0Kluwer Academic Publishers 1996
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Quantum Optics of Confined Systems978-94-009-1657-9Series ISSN 0168-132X
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Photonic Band Structures,r phenomena[1, 2]. The topic of this school attests to the significance of the field and its continued growth and evolution. It has not remained only a laboratory curiosity, but like its historic beginnings, it continues to find technological applications.
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Solid State Physics: Basic and Optical Properties,ns are devoted to the discussion of the excitons in bulk and in confined systems and to their optical properties and of polaritons both in bulk and in confined systems and in particular in quantum wells embebbed in micro-cavities.
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Squeezing and Cavity QED in Semiconductors,n state generating turnstile device. In the fourth section, the principle of cavity QED in low-. regime and its application to microcavity semiconductor laser are described. The last section is devoted to the discussions of the principle of cavity QED in high-. regime and its application to quantum well exciton systems.
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Physics of Semiconductor Lasers, IEEE Journal of Quantum Electronics [5–6] whereas on novel vertical cavity lasers there is not much review work [7] that one has to refer to various technical papers [8–11] to provide an overview of the state-of-the-art.
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