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Titlebook: Quantum Optics; Including Noise Redu Miguel Orszag Textbook 2024Latest edition The Editor(s) (if applicable) and The Author(s), under exclu

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Miguel Orszagbility modelling can help both parties to describe their demands and offers with respect to needed and provided quality properties such as set-up times or ecological footprint. These serve as input for a digital business ecosystem in which the pareto-optimal factory design can be chosen supported by
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Miguel Orszagcribed regarding following categories: Indoor Environment Quality Measurements, External Environment Impact, Building Characteristics, Sensors and Measuring Process, Pollutants, Management Aspects. Based on these concepts found during the studies we developed a number of conceptual models.
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,Einstein’s Theory of Atom–Radiation Interaction,In this chapter, we study spontaneous and stimulated emission phenomenologically, as well as an elementary laser theory.
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,Atom–Field Interaction: Semiclassical Approach,In this chapter, we study the resonant interaction between atoms and light. The Bloch’s equations are derived, and by adding a relaxation term, various decay effects are included.
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,Quantization of the Electromagnetic Field,In this chapter, we quantize the electromagnetic field and find the commutation relations between the various components of the electric, magnetic fields and the vector potential.
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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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,Quantum Theory of Coherence,In this chapter, we study Glauber’s quantum theory of coherence and photon counting.
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Phase Space Description,In this chapter, we consider an alternative way of studying quantum phenomena, using c-number functions in the phase space.
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,Atom–Field Interaction,In this Chapter, we study the atom–field interaction in the usual and dressed picture. We also address the problems of Rabi oscillations and the collapse and revivals.
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