2 edition of **Bose-Einstein Condensates and Atom Lasers** found in the catalog.

- 373 Want to read
- 8 Currently reading

Published
**2000**
by Springer in Dordrecht
.

Written in English

- Science,
- Bose-Einstein condensation,
- Physics,
- Lasers,
- Congresses

Since the demonstration of Bose Einstein condensation in dilute atomic gases, interest has been shown in the properties of this macroscopic quantum system. This book covers the methods used to produce these new samples of coherent atoms, their manipulation, and a study of their properties.

Classifications | |
---|---|

LC Classifications | QC175.47.B65 B66 2000eb |

The Physical Object | |

Format | [electronic resource] |

Pagination | 1 online resource (336 p.) |

Number of Pages | 336 |

ID Numbers | |

Open Library | OL27021986M |

ISBN 10 | 0306471035 |

ISBN 10 | 9780306471032 |

OCLC/WorldCa | 707917568 |

Bose-Einstein Condensates - Science topic Explore the latest questions and answers in Bose-Einstein Condensates, and find Bose-Einstein Condensates experts. Questions (60). Bose–Einstein condensation in atomic clouds 4 Superﬂuid 4He 6 Other condensates 8 Overview 10 Problems 13 References 14 2 The non-interacting Bose gas 16 The Bose distribution 16 Density of states 18 Transition temperature and condensate fraction 21 Condensate fraction 23 Density proﬁle and velocity.

Condensate Oscillations, Kinetic Equations and Two-Fluid Hydrodynamics in a Bose Gas (A Griffin) Finite Temperature Effects in Bose-Einstein Condensates (K Burnett) The Theory of Atom Lasers (R J Ballagh & C M Savage) Vortices and Solitons in Bose-Condensates (P D Drummond). A Bose–Einstein condensate (BEC) is a state of matter of a dilute gas of low densities called bosons cooled to temperatures very close to absolute zero ( °C). Under such conditions, a large fraction of bosons occupy the lowest quantum state, at which point microscopic quantum phenomena.

Simplified System for Creating a Bose–Einstein Condensate Article (PDF Available) in Journal of Low Temperature Physics (5) September with Reads How we measure 'reads'. A short video explaining how a Bose-Einstein Condensate of sodium atoms is created in lab at MIT by Martin Zwierlein. Using highly focused, single frequency lasers it is possible to cool the.

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Since the experimental demonstration of Bose Einstein Condensation in dilute atomic gases there has been an explosion of interest in the properties of Bose-Einstein Condensates and Atom Lasers book novel macroscopic quantum system.

The book covers the methods used to produce these new samples of coherent atoms, their manipulation and the study of their : Paperback. Proceedings of the International School of Quantum Electronics 27th course on Bose Einstein Condensates and Atom Lasers, October, Erice, Italy.

Since the experimental demonstration of Bose Einstein Condensation in dilute atomic gases there has been an explosion of interest in the properties of this novel macroscopic quantum system. Since the experimental demonstration of Bose Einstein Condensation in dilute atomic gases there has been an explosion of interest in the properties of this novel macroscopic quantum system.

The book covers the methods used to produce these new samples of coherent atoms, their manipulation and the study of their properties. Bose-Einstein Condensates and Atom Lasers | S. Martellucci | download | B–OK.

Download books for free. Find books. Pierre Meystre's Atom Optics is the first book entirely devoted to this exciting area of research. Reference links to the leading journals in the field, links to research sites, graphics, and updates can be found online.

Category: Science Laser And Bose Einstein Condensation Physics. Bose Einstein Condensates in Optical Cavities: Transmission spectroscopy, Entanglement generation and Superradiance in Ultracold atoms confined in Optical cavities. Bose-Einstein condensates and atom lasers. New York: Kluwer Academic/Plenum Publishers, (OCoLC) Online version: Bose-Einstein condensates and atom lasers.

New York: Kluwer Academic/Plenum Publishers, (OCoLC) Material Type: Conference publication, Internet resource: Document Type: Book, Internet Resource: All. Bose-Einstein Condensates and Atom Lasers by S. Martellucci,available at Book Depository with free delivery worldwide.3/5(1).

OCLC Number: Notes: "Proceedings of the 27th Course of the International School of Quantum Electronics on Bose-Einstein Condensates and Atom Lasers, held October, in Erice, Sicily, Italy"--Title page verso.

Atomic optics, Bose-Einstein condensates and atom lasers Inwith the backing of CNRS, Alain Aspect founded the atomic optics group at the Institut d’Optique at Orsay, with Nathalie Westbrook and Robin Kaiser, and later Christoph Westbrook.

Atomic optics is a new field of research which aims to use the forces exerted by. Major topics covered are: Ultracold atom: electron interaction, Laser sub cycle two dimensional electron momentum mapping using orthogonal two color fields, Magneto optical trapping of a diatomic molecule, Coherent magnon optics in a ferromagnetic spinor Bose-Einstein condensate, Nanophotonic quantum phase switch with.

BibTeX @MISC{De_bose–einsteincondensates, author = {Condensats De and Lasers À Atomes and Claude Cohen-tannoudji A and Cécile Robilliard B}, title = {BOSE–EINSTEIN CONDENSATES AND ATOM LASERS}, year = {}}. The book considers laser cooling techniques, atom-atom interactions, and focuses on the elementary excitations and collective oscillations in atomic clouds, Bose-Einstein condensates.

Abstract. We now turn to the condensate phase of ultra-cold matter. It is known that condensation in cold atomic clouds occurs when the cooling lasers are switched off and for this reason the atom-atom interactions associated with an exchange of scattered photons are no longer : J.

Mendonça, Hugo Terças. matter called a Bose-Einstein condensate (BEC). The phenomenon is not only providing new insights into quantum theory – which underpins our understanding of the Universe at the microscopic level – but also opens the door to a host of applications such as atom lasers, improved atomic clocks and quantum computers.

Quantum theory is a. An atom laser is a coherent state of propagating atoms. They are created out of a Bose–Einstein condensate of atoms that are output coupled using various techniques. Much like an optical laser, an atom laser is a coherent beam that behaves like a wave.

There has been some argument that the term "atom laser" is misleading. The first Bose–Einstein condensate (BEC) to be cooled using just lasers has been made by a team in Austria.

The process is much simpler, faster and more efficient than previous methods, which involve an extra stage of evaporative cooling. The book is an introductory text to the physics of Bose-Einstein condensation.

This phenomenon, first predicted by Einstein inhas been realized experimentally in in a remarkable series of experiments whose importance has been recognized by the award of the Nobel Prize in Physics.

The condensate is actually a new state of matter, where quantum-mechanical 5/5(1). Dr. Kiki asks Dr. Michio Kaku a question from Justin Gill about Bose-Einstein Condensates. Twitter provided a great forum for collecting questions for Dr.

Kaku. For more great science news and. For a dilute, interacting Bose gas of magnetically-trapped atoms at temperatures below the critical temperature T0 for Bose-Einstein condensation, we determine the second-order coherence function g(2)(r1, r2) within the framework of a finite-temperature quantum field theory.

We show that, because of the different spatial distributions of condensate and thermal atoms in the trap, g(2)(r1, r2. Bose–Einstein condensates it enlarges the scope of atom optics by providing 'atom lasers'.

Condensates are atom sources with high brightness and small divergence and are Books Cited by: Applications of lasers include CD/DVD players, laser printers and fiber optic communication devices. Part II of this book describes the phenomenon of Bose–Einstein condensation.

The experimental techniques used to create a Bose–Einstein condensate provide an interesting and unconventional application of lasers; that is, the cooling and.

Because Bose–Einstein condensates have an extremely low expansion energy, space-borne atom interferometers based on Bose–Einstein condensation have Cited by: