Malinovsky Vladimir (20 results)

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  • Language: English

    Published by Princeton University Press, 2011

    0691140561 / 9780691140568

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  • Language: English

    Published by Princeton University Press, 2011

    0691140561 / 9780691140568

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    hardcover. Condition: Good. . Satisfaction 100% guaranteed.

  • Language: English

    Published by Princeton University Press, 2011

    0691140561 / 9780691140568

    • Hardcover

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  • Language: English

    Published by Princeton University Press, 2011

    0691140561 / 9780691140568

    • Hardcover

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  • Language: English

    Published by Princeton University Press, 2011

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    • Hardcover

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  • Language: English

    Published by Princeton University Press, 2011

    0691140561 / 9780691140568

    • Hardcover

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  • Language: English

    Published by Princeton University Press, 2011

    0691140561 / 9780691140568

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  • Language: English

    Published by Princeton University Press 2011-01-12, 2011

    0691140561 / 9780691140568

    • Hardcover

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  • Language: English

    Published by Princeton University Press, 2011

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    • Hardcover

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  • Language: English

    Published by Princeton University Press, US, 2011

    0691140561 / 9780691140568

    • Hardcover

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    Hardback. Condition: New. Principles of Laser Spectroscopy and Quantum Optics is an essential textbook for graduate students studying the interaction of optical fields with atoms. It also serves as an ideal reference text for researchers working in the fields of laser spectroscopy and quantum optics. The book provides a rigorous introduction to the prototypical problems of radiation fields interacting with two- and three-level atomic systems. It examines the interaction of radiation with both atomic vapors and condensed matter systems, the density matrix and the Bloch vector, and applications involving linear absorption and saturation spectroscopy. Other topics include hole burning, dark states, slow light, and coherent transient spectroscopy, as well as atom optics and atom interferometry. In the second half of the text, the authors consider applications in which the radiation field is quantized. Topics include spontaneous decay, optical pumping, sub-Doppler laser cooling, the Heisenberg equations of motion for atomic and field operators, and light scattering by atoms in both weak and strong external fields. The concluding chapter offers methods for creating entangled and spin-squeezed states of matter.Instructors can create a one-semester course based on this book by combining the introductory chapters with a selection of the more advanced material. A solutions manual is available to teachers. * Rigorous introduction to the interaction of optical fields with atoms * Applications include linear and nonlinear spectroscopy, dark states, and slow light * Extensive chapter on atom optics and atom interferometry * Conclusion explores entangled and spin-squeezed states of matter * Solutions manual (available only to teachers).

  • Language: English

    Published by Princeton University Press, 2011

    0691140561 / 9780691140568

    • Hardcover

    Seller: Ria Christie Collections, Uxbridge, United KingdomRia Christie Collections

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    Condition: New. In English.

  • Language: English

    Published by Princeton University Press, US, 2011

    0691140561 / 9780691140568

    • Hardcover

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    Hardback. Condition: New. Principles of Laser Spectroscopy and Quantum Optics is an essential textbook for graduate students studying the interaction of optical fields with atoms. It also serves as an ideal reference text for researchers working in the fields of laser spectroscopy and quantum optics. The book provides a rigorous introduction to the prototypical problems of radiation fields interacting with two- and three-level atomic systems. It examines the interaction of radiation with both atomic vapors and condensed matter systems, the density matrix and the Bloch vector, and applications involving linear absorption and saturation spectroscopy. Other topics include hole burning, dark states, slow light, and coherent transient spectroscopy, as well as atom optics and atom interferometry. In the second half of the text, the authors consider applications in which the radiation field is quantized. Topics include spontaneous decay, optical pumping, sub-Doppler laser cooling, the Heisenberg equations of motion for atomic and field operators, and light scattering by atoms in both weak and strong external fields. The concluding chapter offers methods for creating entangled and spin-squeezed states of matter.Instructors can create a one-semester course based on this book by combining the introductory chapters with a selection of the more advanced material. A solutions manual is available to teachers. * Rigorous introduction to the interaction of optical fields with atoms * Applications include linear and nonlinear spectroscopy, dark states, and slow light * Extensive chapter on atom optics and atom interferometry * Conclusion explores entangled and spin-squeezed states of matter * Solutions manual (available only to teachers).

  • Language: English

    Published by Princeton University Press Jan 2011, 2011

    0691140561 / 9780691140568

    • Hardcover

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    Buch. Condition: Neu. Neuware -Principles of Laser Spectroscopy and Quantum Optics is an essential textbook for graduate students studying the interaction of optical fields with atoms. It also serves as an ideal reference text for researchers working in the fields of laser spectroscopy and quantum optics. The book provides a rigorous introduction to the prototypical problems of radiation fields interacting with two- and three-level atomic systems. It examines the interaction of radiation with both atomic vapors and condensed matter systems, the density matrix and the Bloch vector, and applications involving linear absorption and saturation spectroscopy. Other topics include hole burning, dark states, slow light, and coherent transient spectroscopy, as well as atom optics and atom interferometry. In the second half of the text, the authors consider applications in which the radiation field is quantized. Topics include spontaneous decay, optical pumping, sub-Doppler laser cooling, the Heisenberg equations of motion for atomic and field operators, and light scattering by atoms in both weak and strong external fields. The concluding chapter offers methods for creating entangled and spin-squeezed states of matter. Instructors can create a one-semester course based on this book by combining the introductory chapters with a selection of the more advanced material. A solutions manual is available to teachers. - Rigorous introduction to the interaction of optical fields with atoms - Applications include linear and nonlinear spectroscopy, dark states, and slow light - Extensive chapter on atom optics and atom interferometry - Conclusion explores entangled and spin-squeezed states of matter - Solutions manual (available only to teachers).

  • Language: English

    Published by Princeton University Press Jan 2011, 2011

    0691140561 / 9780691140568

    • Hardcover

    Seller: AHA-BUCH GmbH, Einbeck, GermanyAHA-BUCH GmbH

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    Buch. Condition: Neu. Neuware - Principles of Laser Spectroscopy and Quantum Optics is an essential textbook for graduate students studying the interaction of optical fields with atoms. It also serves as an ideal reference text for researchers working in the fields of laser spectroscopy and quantum optics. The book provides a rigorous introduction to the prototypical problems of radiation fields interacting with two- and three-level atomic systems. It examines the interaction of radiation with both atomic vapors and condensed matter systems, the density matrix and the Bloch vector, and applications involving linear absorption and saturation spectroscopy. Other topics include hole burning, dark states, slow light, and coherent transient spectroscopy, as well as atom optics and atom interferometry. In the second half of the text, the authors consider applications in which the radiation field is quantized. Topics include spontaneous decay, optical pumping, sub-Doppler laser cooling, the Heisenberg equations of motion for atomic and field operators, and light scattering by atoms in both weak and strong external fields. The concluding chapter offers methods for creating entangled and spin-squeezed states of matter. Instructors can create a one-semester course based on this book by combining the introductory chapters with a selection of the more advanced material. A solutions manual is available to teachers. - Rigorous introduction to the interaction of optical fields with atoms - Applications include linear and nonlinear spectroscopy, dark states, and slow light - Extensive chapter on atom optics and atom interferometry - Conclusion explores entangled and spin-squeezed states of matter - Solutions manual (available only to teachers).

  • Language: English

    Published by Princeton University Press, US, 2011

    0691140561 / 9780691140568

    • Hardcover

    Seller: Rarewaves USA United, HEBRON, KY, U.S.A.Rarewaves USA United

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    Hardback. Condition: New. Principles of Laser Spectroscopy and Quantum Optics is an essential textbook for graduate students studying the interaction of optical fields with atoms. It also serves as an ideal reference text for researchers working in the fields of laser spectroscopy and quantum optics. The book provides a rigorous introduction to the prototypical problems of radiation fields interacting with two- and three-level atomic systems. It examines the interaction of radiation with both atomic vapors and condensed matter systems, the density matrix and the Bloch vector, and applications involving linear absorption and saturation spectroscopy. Other topics include hole burning, dark states, slow light, and coherent transient spectroscopy, as well as atom optics and atom interferometry. In the second half of the text, the authors consider applications in which the radiation field is quantized. Topics include spontaneous decay, optical pumping, sub-Doppler laser cooling, the Heisenberg equations of motion for atomic and field operators, and light scattering by atoms in both weak and strong external fields. The concluding chapter offers methods for creating entangled and spin-squeezed states of matter.Instructors can create a one-semester course based on this book by combining the introductory chapters with a selection of the more advanced material. A solutions manual is available to teachers. * Rigorous introduction to the interaction of optical fields with atoms * Applications include linear and nonlinear spectroscopy, dark states, and slow light * Extensive chapter on atom optics and atom interferometry * Conclusion explores entangled and spin-squeezed states of matter * Solutions manual (available only to teachers).

  • Language: English

    Published by Princeton University Press, 2011

    0691140561 / 9780691140568

    • Hardcover

    Seller: GreatBookPricesUK, Woodford Green, United KingdomGreatBookPricesUK

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  • Language: English

    Published by Princeton University Press, US, 2011

    0691140561 / 9780691140568

    • Hardcover

    Seller: Rarewaves.com UK, London, United KingdomRarewaves.com UK

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    Hardback. Condition: New. Principles of Laser Spectroscopy and Quantum Optics is an essential textbook for graduate students studying the interaction of optical fields with atoms. It also serves as an ideal reference text for researchers working in the fields of laser spectroscopy and quantum optics. The book provides a rigorous introduction to the prototypical problems of radiation fields interacting with two- and three-level atomic systems. It examines the interaction of radiation with both atomic vapors and condensed matter systems, the density matrix and the Bloch vector, and applications involving linear absorption and saturation spectroscopy. Other topics include hole burning, dark states, slow light, and coherent transient spectroscopy, as well as atom optics and atom interferometry. In the second half of the text, the authors consider applications in which the radiation field is quantized. Topics include spontaneous decay, optical pumping, sub-Doppler laser cooling, the Heisenberg equations of motion for atomic and field operators, and light scattering by atoms in both weak and strong external fields. The concluding chapter offers methods for creating entangled and spin-squeezed states of matter.Instructors can create a one-semester course based on this book by combining the introductory chapters with a selection of the more advanced material. A solutions manual is available to teachers. * Rigorous introduction to the interaction of optical fields with atoms * Applications include linear and nonlinear spectroscopy, dark states, and slow light * Extensive chapter on atom optics and atom interferometry * Conclusion explores entangled and spin-squeezed states of matter * Solutions manual (available only to teachers).

  • Language: English

    Published by Princeton University Press Jan 2011, 2011

    0691140561 / 9780691140568

    • Hardcover

    Seller: Books-by-Floh, Paderborn, GermanyBooks-by-Floh

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    Buch. Condition: Neu. Neuware -Principles of Laser Spectroscopy and Quantum Optics is an essential textbook for graduate students studying the interaction of optical fields with atoms. It also serves as an ideal reference text for researchers working in the fields of laser spectroscopy and quantum optics. The book provides a rigorous introduction to the prototypical problems of radiation fields interacting with two- and three-level atomic systems. It examines the interaction of radiation with both atomic vapors and condensed matter systems, the density matrix and the Bloch vector, and applications involving linear absorption and saturation spectroscopy. Other topics include hole burning, dark states, slow light, and coherent transient spectroscopy, as well as atom optics and atom interferometry. In the second half of the text, the authors consider applications in which the radiation field is quantized. Topics include spontaneous decay, optical pumping, sub-Doppler laser cooling, the Heisenberg equations of motion for atomic and field operators, and light scattering by atoms in both weak and strong external fields. The concluding chapter offers methods for creating entangled and spin-squeezed states of matter. Instructors can create a one-semester course based on this book by combining the introductory chapters with a selection of the more advanced material. A solutions manual is available to teachers. - Rigorous introduction to the interaction of optical fields with atoms - Applications include linear and nonlinear spectroscopy, dark states, and slow light - Extensive chapter on atom optics and atom interferometry - Conclusion explores entangled and spin-squeezed states of matter - Solutions manual (available only to teachers) 544 pp. Englisch.

  • Published by Princeton University Press 978-0-691-14065-8, Princeton

    • Hardcover

    Seller: Burton Lysecki Books, ABAC/ILAB, Winnipeg, MB, CanadaBurton Lysecki Books, ABAC/ILAB

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    [978-0-691-14065-8] 2011. (Hardcover) Fine, no dust jacket. 519pp. Illustrations, formulas, bibliography, index. (Science, Laser Spectroscopy, Quantum Optics).

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    Hardcover. Condition: Good. In Russian. Malinovsky, Vladimir Vasilievich. Hydromechanical processes in chemical technology. Kyiv: CRPI, All images are for identification of editions only. Several books of the same edition may be available. Please feel free to request photos of available books.SKU1008904.