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Titlebook: Quantum Optics; Including Noise Redu Miguel Orszag Textbook 20001st edition Springer-Verlag Berlin Heidelberg 2000 Lasers.Quantum Physics.S

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楼主: Iodine
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Miguel Orszagand contemporary topics in the field of educational technology;.Provides an ongoing report on the current issues in the field of educational technology;.Contains a section presenting organizations dedicated to 978-3-030-71776-6978-3-030-71774-2Series ISSN 8755-2094
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Miguel Orszagand contemporary topics in the field of educational technology;.Provides an ongoing report on the current issues in the field of educational technology;.Contains a section presenting organizations dedicated to 978-3-030-71776-6978-3-030-71774-2Series ISSN 8755-2094
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1439-2674 of ions in a Paul trap. These topics are presented in a unified and didactic manner. The presentation of the book is clear and pedagogical; it balances the theoretical aspects of the optical phenomena with recent relevant experiments.978-3-662-04114-7Series ISSN 1439-2674
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Atom-Field Interaction: Semiclassical Approach,In this chapter, we study the resonant interaction between atoms and light. Bloch’s equations are derived and, by adding a relaxation term, various decay effects are included.
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States of the Electromagnetic Field I,Coherent states, introduced by Glauber [4.1] and Sudarshan [4.2], are defined as the eigenstates of the annihilation operator.
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States of the Electromagnetic Field II,In this chapter we deal with the general properties of squeezed states. We also describe two methods of detection of these states.
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Resonance Fluorescence,The theory of spontaneous emission was originally developed by Weisskopf and Wigner [10.1]. However, the sidebands for coherent single-mode fields were found by Mollow in the 1960s [10.2]. The physical origin of the sidebands in the resonance fluorescence spectrum can be nicely seen using dressed states [10.3].
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Quantum Noise Reduction I,In many areas of modern physics, ultrasmall displacements are detected optically. The small displacement is converted into a change of optical path length in an interferometer. This detection scheme is usually done in two ways:
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Quantum Noise Reduction II,In this chapter we will cover the area of theory and relevant experiments in the generation of squeezed states. Prior to discussing the parametric oscillator, we offer a brief introduction to non-linear optics and input-output theory. Finally, we will discuss other important experiments that generate squeezed states.
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