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Advances in Atomic, Molecular, and Optical Physics, Volume 59 (Hardcover, 55 Ed): Paul R. Berman, Ennio Arimondo, Chun C. Lin Advances in Atomic, Molecular, and Optical Physics, Volume 59 (Hardcover, 55 Ed)
Paul R. Berman, Ennio Arimondo, Chun C. Lin
R5,780 Discovery Miles 57 800 Ships in 12 - 17 working days

This volume continues the tradition of the "Advances" series. It contains contributions from experts in the field of atomic, molecular, and optical (AMO) physics. The articles contain some review material, but are intended to provide a comprehensive picture of recent important developments in AMO physics. Both theoretical and experimental articles are included in the volume.
International experts
Comprehensive articles
New developments"

Advances in Atomic, Molecular, and Optical Physics, Volume 58 (Hardcover, 58th edition): Paul R. Berman, Ennio Arimondo, Chun... Advances in Atomic, Molecular, and Optical Physics, Volume 58 (Hardcover, 58th edition)
Paul R. Berman, Ennio Arimondo, Chun C. Lin
R5,782 Discovery Miles 57 820 Ships in 12 - 17 working days

This volume continues the tradition of the "Advances" series. It contains contributions from experts in the field of atomic, molecular, and optical (AMO) physics. The articles contain some review material, but are intended to provide a comprehensive picture of recent important developments in AMO physics. Both theoretical and experimental articles are included in the volume.
International experts
Comprehensive articles
New developments"

Advances in Atomic, Molecular, and Optical Physics, Volume 63 (Hardcover, 55 Ed): Paul R. Berman, Chun C. Lin, Ennio Arimondo Advances in Atomic, Molecular, and Optical Physics, Volume 63 (Hardcover, 55 Ed)
Paul R. Berman, Chun C. Lin, Ennio Arimondo
R5,422 Discovery Miles 54 220 Ships in 12 - 17 working days

Advances in Atomic, Molecular, and Optical Physics publishes reviews of recent developments in a field that is in a state of rapid growth, as new experimental and theoretical techniques are used on many old and new problems. Topics covered include related applied areas, such as atmospheric science, astrophysics, surface physics and laser physics. Articles are written by distinguished experts and contain relevant review material and detailed descriptions of important recent developments.

Advances in Atomic, Molecular, and Optical Physics, Volume 62 (Hardcover): Paul R. Berman, Ennio Arimondo, Chun C. Lin Advances in Atomic, Molecular, and Optical Physics, Volume 62 (Hardcover)
Paul R. Berman, Ennio Arimondo, Chun C. Lin
R5,399 Discovery Miles 53 990 Ships in 12 - 17 working days

"Advances in Atomic, Molecular, and Optical Physics" publishes reviews of recent developments in a field that is in a state of rapid growth, as new experimental and theoretical techniques are used on many old and new problems. Topics covered include related applied areas, such as atmospheric science, astrophysics, surface physics and laser physics. Articles are written by distinguished experts and contain relevant review material and detailed descriptions of important recent developments.
International experts
Comprehensive articles
New developments"

Advances in Atomic, Molecular, and Optical Physics, Volume 56 (Hardcover, 55 Ed): Paul R. Berman, Chun C. Lin, Ennio Arimondo Advances in Atomic, Molecular, and Optical Physics, Volume 56 (Hardcover, 55 Ed)
Paul R. Berman, Chun C. Lin, Ennio Arimondo
R5,409 Discovery Miles 54 090 Ships in 12 - 17 working days

This volume continues the tradition of the Advances series. It contains contributions from experts in the field of atomic, molecular, and optical (AMO) physics. The articles contain some review material, but are intended to provide a comprehensive picture of recent important developments in AMO physics. Both theoretical and experimental articles are included in the volume.
- International experts
- Comprehensive articles
- New developments

Advances in Atomic, Molecular, and Optical Physics, Volume 57 (Hardcover, 57th edition): Ennio Arimondo, Paul R. Berman, Chun... Advances in Atomic, Molecular, and Optical Physics, Volume 57 (Hardcover, 57th edition)
Ennio Arimondo, Paul R. Berman, Chun C. Lin
R5,093 Discovery Miles 50 930 Ships in 12 - 17 working days

This volume continues the tradition of the Advances series. It contains contributions from experts in the field of atomic, molecular, and optical (AMO) physics. The articles contain some review material, but are intended to provide a comprehensive picture of recent important developments in AMO physics. Both theoretical and experimental articles are included in the volume.
- International experts
- Comprehensive articles
- New developments

Advances in Atomic, Molecular, and Optical Physics, Volume 54 (Hardcover, 55 Ed): Paul R. Berman, Chun C. Lin, Ennio Arimondo Advances in Atomic, Molecular, and Optical Physics, Volume 54 (Hardcover, 55 Ed)
Paul R. Berman, Chun C. Lin, Ennio Arimondo
R5,449 Discovery Miles 54 490 Ships in 12 - 17 working days

Volume 54 of the Advances Series contains ten contributions, covering a diversity of subject areas in atomic, molecular and optical physics. The article by Regal and Jin reviews the properties of a Fermi degenerate gas of cold potassium atoms in the crossover regime between the Bose-Einstein condensation of molecules and the condensation of fermionic atom pairs. The transition between the two regions can be probed by varying an external magnetic field. Sherson, Julsgaard and Polzik explore the manner in which light and atoms can be entangled, with applications to quantum information processing and communication. They report on the result of recent experiments involving the entanglement of distant objects and quantum memory of light. Recent developments in cold Rydberg atom physics are reviewed in the article by Choi, Kaufmann, Cubel-Liebisch, Reinhard, and Raithel. Fascinating experiments are described in which cold, highly excited atoms (???Rydberg??? atoms) and cold plasmas are generated. Evidence for a collective excitation of Rydberg matter is also presented. Griffiin and Pindzola offer an account of non-perturbative quantal methods for electron-atom scattering processes. Included in the discussion are the R-matrix with pseudo-states method and the time-dependent close-coupling method. An extensive review of the R-matrix theory of atomic, molecular, and optical processes is given by Burke, Noble, and Burke. They present a systematic development of the R-matrix method and its applications to various processes such as electron-atom scattering, atomic photoionization, electron-molecule scattering, positron-atom scattering, and atomic/molecular multiphoton processes. Electron impactexcitation of rare-gas atoms from both their ground and metastable states is discussed in the article by Boffard, Jung, Anderson, and Lin. Excitation cross sections measured by the optical method are reviewed with emphasis on the physical interpretation in terms of electronic structure of the target atoms. Ozier and Moazzen-Ahmadi explore internal rotation of symmetric top molecules. Developments of new experimental methods based on high-resolution torsional, vibrational, and molecular beam spectroscopy allow accurate determination of internal barriers for these symmetric molecules. The subject of attosecond and angstrom science is reviewed by Niikura and Corkum. The underlying physical mechanisms allowing one to generate attosecond radiation pulses are described and the technology needed for the preparation of such pulses is discussed. LeGou??t, Bretenaker, and Lorger?? describe how rare earth ions embedded in crystals can be used for processing optically carried broadband radio-frequency signals. Methods for reaching tens of gigahertz instantaneous bandwidth with submegahertz resolution using such devices are analyzed in detail and demonstrated experimentally. Finally, in the article by Illing, Gauthier, and Roy, it is shown that small perturbations applied to optical systems can be used to suppress or control optical chaos, spatio-temporal dynamics, and patterns. Applications of these techniques to communications, laser stabilization, and improving the sensitivity of low-light optical switches are explored.
?? International experts
?? Comprehensive articles
?? New developments

Advances in Atomic, Molecular, and Optical Physics, Volume 60 (Hardcover, New): Paul R. Berman, Ennio Arimondo, Chun C. Lin Advances in Atomic, Molecular, and Optical Physics, Volume 60 (Hardcover, New)
Paul R. Berman, Ennio Arimondo, Chun C. Lin
R7,484 Discovery Miles 74 840 Ships in 10 - 15 working days

Advances in Atomic, Molecular, and Optical Physics publishesreviews ofrecent developments ina field which is in a state of rapid growth, as new experimental and theoretical techniques are used on many old and new problems. Topics covered include related applied areas, such as atmospheric science, astrophysics, surface physics and laser physics. Articles are written by distinguished experts, and contain both relevant review material and detailed descriptions of important recent developments.
International experts
Comprehensive articles
New developments"

Principles of Laser Spectroscopy and Quantum Optics (Hardcover): Paul R. Berman, Vladimir S. Malinovsky Principles of Laser Spectroscopy and Quantum Optics (Hardcover)
Paul R. Berman, Vladimir S. Malinovsky
R2,885 R2,537 Discovery Miles 25 370 Save R348 (12%) Ships in 12 - 17 working days

"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)

Introductory Quantum Mechanics - A Traditional Approach Emphasizing Connections with Classical Physics (Paperback, Softcover... Introductory Quantum Mechanics - A Traditional Approach Emphasizing Connections with Classical Physics (Paperback, Softcover reprint of the original 1st ed. 2018)
Paul R. Berman
R1,671 Discovery Miles 16 710 Ships in 10 - 15 working days

This book presents a basic introduction to quantum mechanics. Depending on the choice of topics, it can be used for a one-semester or two-semester course. An attempt has been made to anticipate the conceptual problems students encounter when they first study quantum mechanics. Wherever possible, examples are given to illustrate the underlying physics associated with the mathematical equations of quantum mechanics. To this end, connections are made with corresponding phenomena in classical mechanics and electromagnetism. The problems at the end of each chapter are intended to help students master the course material and to explore more advanced topics. Many calculations exploit the extraordinary capabilities of computer programs such as Mathematica, MatLab, and Maple. Students are urged to use these programs, just as they had been urged to use calculators in the past. The treatment of various topics is rather complete, in that most steps in derivations are included. Several of the chapters go beyond what is traditionally covered in an introductory course. The goal of the presentation is to provide the students with a solid background in quantum mechanics.

Advances in Atomic, Molecular, and Optical Physics, Volume 61 (Hardcover, New): Paul R. Berman, Ennio Arimondo, Chun C. Lin Advances in Atomic, Molecular, and Optical Physics, Volume 61 (Hardcover, New)
Paul R. Berman, Ennio Arimondo, Chun C. Lin
R7,017 Discovery Miles 70 170 Ships in 10 - 15 working days

Advances in Atomic, Molecular, and Optical Physics publishesreviews ofrecent developments ina field which is in a state of rapid growth, as new experimental and theoretical techniques are used on many old and new problems. Topics covered include related applied areas, such as atmospheric science, astrophysics, surface physics and laser physics. Articles are written by distinguished experts, and contain both relevant review material and detailed descriptions of important recent developments.
International experts
Comprehensive articles
New developments"

Advances in Atomic, Molecular, and Optical Physics, Volume 55 (Hardcover, 55th edition): Ennio Arimondo, Paul R. Berman, Chun... Advances in Atomic, Molecular, and Optical Physics, Volume 55 (Hardcover, 55th edition)
Ennio Arimondo, Paul R. Berman, Chun C. Lin
R7,876 Discovery Miles 78 760 Ships in 10 - 15 working days

Volume 55 of the Advances Series contains seven contributions, covering a diversity of subject areas in atomic, molecular and optical physics. In their contribution, Stowe, Thorpe, Pe'er, Ye, Stalnaker, Gerginov, and Diddams explore recent developments in direct frequency comb spectroscopy. Precise phase coherence among successive ultrashort pulses of a frequency comb allows one to probe fast dynamics in the time domain and high-resolution structural information in the frequency domain for both atoms and molecules. The authors provide a detailed review of some of the current applications that exploit the unique features of frequency comb spectroscopy and discuss its future directions. Yurvsky, Olshanii and Weiss review theory and experiment of elongated atom traps that confine ultracold gases in a quasi-one-dimensional regime. Under certain conditions, these quasi-one-dimensional gases are well-described by integrable one-dimensional many-body models with exact quantum solutions. Thermodynamic and correlation properties of one such model that has been experimentally realized are reviewed. DePaola, Morgenstein and Andersen discuss magneto-optical trap recoil ion momentum spectroscopy (MOTRIMS), exploring collisions between a projectile and target resulting in charged target fragments. MOTRIMS combines the technology of laser cooling and trapping of target atoms with the momentum analysis of the charged fragments that recoil from the target. The authors review the different MOTRIMS experimental approaches and the spectroscopic and collisional investigations performed so far. Safronova and Johnson give an overview of atomic many-body perturbation theory and discuss why extensions of thetheory are needed. They present "all-order" results based on a linearized version of coupled cluster expansions and apply the theory to calculations of energies, transition matrix elements and hyperfine constants. Another contribution on atomic theory, authored by Fischer, explores the advantages of expanding the atomic radial wave functions in a B-spline basis. The differential equations are replaced by non-linear systems of equations and the problems of orthogonality requirements can be dealt with using projection operators. Electron-ion collisional processes are analyzed by Mueller, including descriptions of the experimental techniques needed to obtain cross section data and typical values for these cross sections. The present status of the field is discussed in relation to the detailed cross sections and rate coefficients that are needed for understanding laboratory or astrophysical plasmas. Finally, Duan and Monroe review ways to achieve scalable and robust quantum communication, state engineering, and quantum computation. Using radiation and atoms, ions, or atomic ensembles, they show that they can construct scalable quantum networks that are inherently insensitive to noise. Progress in experimental realization of their proposals is outlined.
-International experts
-Comprehensive articles
-New developments

Advances in Atomic, Molecular, and Optical Physics, Volume 52 (Hardcover, New ed): Paul R. Berman, Chun C. Lin Advances in Atomic, Molecular, and Optical Physics, Volume 52 (Hardcover, New ed)
Paul R. Berman, Chun C. Lin
R7,877 Discovery Miles 78 770 Ships in 10 - 15 working days

This volume continues the tradition of the Advances series. It contains contributions from experts in the field of atomic, molecular, and optical (AMO) physics. The articles contain some review material, but are intended to provide a comprehensive picture of recent important developments in AMO physics. Both theoretical and experimental articles are included in the volume.
. International experts
. Comprehensive articles
. New developments

Atom Interferometry (Hardcover): Paul R. Berman Atom Interferometry (Hardcover)
Paul R. Berman
R8,734 Discovery Miles 87 340 Ships in 10 - 15 working days

The field of atom interferometry has expanded rapidly in recent years, and todays research laboratories are using atom interferometers both as inertial sensors and for precision measurements. Many researchers also use atom interferometry as a means of researching fundamental questions in quantum mechanics.
Atom Interferometry contains contributions from theoretical and experimental physicists at the forefront of this rapidly developing field. Editor Paul R. Berman includes an excellent balance of background material and recent experimental results, providing a general overview of atom interferometry and demonstrating the promise that it holds for the future.
Key Features
* Includes contributions from many of the research groups that have pioneered this emerging field
* Discusses and demonstrates new aspects of the wave nature of atoms
* Explains the many important applications of atom interferometry, from a measurement of the gravitational constant to atom lithography
* Examines applications of atom interferometry to fundamentally important quantum mechanics problems

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