Atomic physics :: precise measurements and ultracold matter /
This book illustrates the history of Atomic Physics and shows how its most recent advances allow the possibility of performing precise measurements and achieving an accurate control on the atomic state. Written in an introductory style, this book is addressed to advanced undergraduate and graduate s...
Gespeichert in:
Hauptverfasser: | , |
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
Oxford :
Oxford University Press,
2013.
|
Ausgabe: | First edition. |
Schlagworte: | |
Online-Zugang: | Volltext |
Zusammenfassung: | This book illustrates the history of Atomic Physics and shows how its most recent advances allow the possibility of performing precise measurements and achieving an accurate control on the atomic state. Written in an introductory style, this book is addressed to advanced undergraduate and graduate students, as well as to more experienced researchers who need to remain up-to-date with the most recent advances. The book focuses on experimental investigations, illustrating milestoneexperiments and key experimental techniques, and discusses the results and the challenges of contemporary research. |
Beschreibung: | 1 online resource |
Bibliographie: | Includes bibliographical references (pages 288-326) and index. |
ISBN: | 9780191509636 0191509639 1299832938 9781299832930 |
Internformat
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245 | 1 | 0 | |a Atomic physics : |b precise measurements and ultracold matter / |c Massimo Inguscio, Leonardo Fallani. |
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588 | 0 | |a Print version record. | |
504 | |a Includes bibliographical references (pages 288-326) and index. | ||
520 | |a This book illustrates the history of Atomic Physics and shows how its most recent advances allow the possibility of performing precise measurements and achieving an accurate control on the atomic state. Written in an introductory style, this book is addressed to advanced undergraduate and graduate students, as well as to more experienced researchers who need to remain up-to-date with the most recent advances. The book focuses on experimental investigations, illustrating milestoneexperiments and key experimental techniques, and discusses the results and the challenges of contemporary research. | ||
505 | 8 | |a 2.3 Laser cooling2.3.1 Radiation pressure; 2.3.2 Atomic beam deceleration; 2.3.3 Doppler cooling; 2.3.4 Sub-Doppler cooling; 2.3.5 Magneto-optical traps; 2.3.6 Laser cooling in multi-level atoms; 2.4 Laser-cooled atomic clocks; 2.4.1 Improving atomic fountain clocks; 2.5 Atom interferometry; 2.5.1 Gravity measurements; 2.5.2 Interferometers for inertial forces; 3 Bose-Einstein condensation; 3.1 Experimental techniques; 3.1.1 Magnetic traps; 3.1.2 Evaporative cooling; 3.1.3 Sympathetic cooling; 3.1.4 Atom-atom interactions and Feshbach resonances; 3.1.5 Imaging ultracold atoms | |
505 | 8 | |a 3.2 Bose-Einstein condensates3.2.1 BEC transition; 3.2.2 BEC excitations; 3.2.3 Superuidity; 3.2.4 Phase coherence; 3.2.5 BEC for precision measurements; 3.2.6 Interferometry with BECs; 3.3 Fermi gases; 3.3.1 Fermionic superuidity; 3.4 Non-alkali BECs; 3.4.1 Hydrogen; 3.4.2 Two-electron atoms; 3.4.3 Dipolar atoms; 3.5 Cold molecules; 3.5.1 Cooling molecules; 3.5.2 Quantum gases with dipolar interaction; 3.5.3 Tests of fundamental physics; 4 Helium; 4.1 The helium spectrum; 4.1.1 Helium laser spectroscopy; 4.2 Helium fine structure; 4.2.1 Microwave measurements; 4.2.2 Optical measurements | |
505 | 8 | |a 5.3.2 Sub-Hz lasers5.4 Trapped ions; 5.4.1 Ion traps; 5.4.2 Ion cooling; 5.5 Ion clocks; 5.5.1 General relativity tests; 5.5.2 Stability of fundamental constants; 6 Optical lattices and precise measurements; 6.1 Quantum transport in periodic potentials; 6.1.1 Bloch theorem and energy bands; 6.1.2 Dynamics of a Bloch wavepacket; 6.1.3 Bloch oscillations; 6.1.4 Josephson picture of the tight-binding limit; 6.2 Optical lattices; 6.3 Experiments with cold atoms; 6.3.1 Observation of Bloch oscillations; 6.3.2 Measurement of h/m with optical lattices; 6.3.3 Large-area atom interferometers | |
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Datensatz im Suchindex
DE-BY-FWS_katkey | ZDB-4-EBA-ocn858981172 |
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adam_text | |
any_adam_object | |
author | Inguscio, M. Fallani, L. (Leonardo) |
author_GND | http://id.loc.gov/authorities/names/n83183124 http://id.loc.gov/authorities/names/no2011160231 |
author_facet | Inguscio, M. Fallani, L. (Leonardo) |
author_role | aut aut |
author_sort | Inguscio, M. |
author_variant | m i mi l f lf |
building | Verbundindex |
bvnumber | localFWS |
callnumber-first | Q - Science |
callnumber-label | QC776 |
callnumber-raw | QC776 |
callnumber-search | QC776 |
callnumber-sort | QC 3776 |
callnumber-subject | QC - Physics |
collection | ZDB-4-EBA |
contents | 2.3 Laser cooling2.3.1 Radiation pressure; 2.3.2 Atomic beam deceleration; 2.3.3 Doppler cooling; 2.3.4 Sub-Doppler cooling; 2.3.5 Magneto-optical traps; 2.3.6 Laser cooling in multi-level atoms; 2.4 Laser-cooled atomic clocks; 2.4.1 Improving atomic fountain clocks; 2.5 Atom interferometry; 2.5.1 Gravity measurements; 2.5.2 Interferometers for inertial forces; 3 Bose-Einstein condensation; 3.1 Experimental techniques; 3.1.1 Magnetic traps; 3.1.2 Evaporative cooling; 3.1.3 Sympathetic cooling; 3.1.4 Atom-atom interactions and Feshbach resonances; 3.1.5 Imaging ultracold atoms 3.2 Bose-Einstein condensates3.2.1 BEC transition; 3.2.2 BEC excitations; 3.2.3 Superuidity; 3.2.4 Phase coherence; 3.2.5 BEC for precision measurements; 3.2.6 Interferometry with BECs; 3.3 Fermi gases; 3.3.1 Fermionic superuidity; 3.4 Non-alkali BECs; 3.4.1 Hydrogen; 3.4.2 Two-electron atoms; 3.4.3 Dipolar atoms; 3.5 Cold molecules; 3.5.1 Cooling molecules; 3.5.2 Quantum gases with dipolar interaction; 3.5.3 Tests of fundamental physics; 4 Helium; 4.1 The helium spectrum; 4.1.1 Helium laser spectroscopy; 4.2 Helium fine structure; 4.2.1 Microwave measurements; 4.2.2 Optical measurements 5.3.2 Sub-Hz lasers5.4 Trapped ions; 5.4.1 Ion traps; 5.4.2 Ion cooling; 5.5 Ion clocks; 5.5.1 General relativity tests; 5.5.2 Stability of fundamental constants; 6 Optical lattices and precise measurements; 6.1 Quantum transport in periodic potentials; 6.1.1 Bloch theorem and energy bands; 6.1.2 Dynamics of a Bloch wavepacket; 6.1.3 Bloch oscillations; 6.1.4 Josephson picture of the tight-binding limit; 6.2 Optical lattices; 6.3 Experiments with cold atoms; 6.3.1 Observation of Bloch oscillations; 6.3.2 Measurement of h/m with optical lattices; 6.3.3 Large-area atom interferometers |
ctrlnum | (OCoLC)858981172 |
dewey-full | 539.7 |
dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 539 - Modern physics |
dewey-raw | 539.7 |
dewey-search | 539.7 |
dewey-sort | 3539.7 |
dewey-tens | 530 - Physics |
discipline | Physik |
edition | First edition. |
format | Electronic eBook |
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id | ZDB-4-EBA-ocn858981172 |
illustrated | Illustrated |
indexdate | 2024-11-27T13:25:33Z |
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publisher | Oxford University Press, |
record_format | marc |
spelling | Inguscio, M., author. http://id.loc.gov/authorities/names/n83183124 Atomic physics : precise measurements and ultracold matter / Massimo Inguscio, Leonardo Fallani. First edition. Oxford : Oxford University Press, 2013. 1 online resource text txt rdacontent computer c rdamedia online resource cr rdacarrier Print version record. Includes bibliographical references (pages 288-326) and index. This book illustrates the history of Atomic Physics and shows how its most recent advances allow the possibility of performing precise measurements and achieving an accurate control on the atomic state. Written in an introductory style, this book is addressed to advanced undergraduate and graduate students, as well as to more experienced researchers who need to remain up-to-date with the most recent advances. The book focuses on experimental investigations, illustrating milestoneexperiments and key experimental techniques, and discusses the results and the challenges of contemporary research. 2.3 Laser cooling2.3.1 Radiation pressure; 2.3.2 Atomic beam deceleration; 2.3.3 Doppler cooling; 2.3.4 Sub-Doppler cooling; 2.3.5 Magneto-optical traps; 2.3.6 Laser cooling in multi-level atoms; 2.4 Laser-cooled atomic clocks; 2.4.1 Improving atomic fountain clocks; 2.5 Atom interferometry; 2.5.1 Gravity measurements; 2.5.2 Interferometers for inertial forces; 3 Bose-Einstein condensation; 3.1 Experimental techniques; 3.1.1 Magnetic traps; 3.1.2 Evaporative cooling; 3.1.3 Sympathetic cooling; 3.1.4 Atom-atom interactions and Feshbach resonances; 3.1.5 Imaging ultracold atoms 3.2 Bose-Einstein condensates3.2.1 BEC transition; 3.2.2 BEC excitations; 3.2.3 Superuidity; 3.2.4 Phase coherence; 3.2.5 BEC for precision measurements; 3.2.6 Interferometry with BECs; 3.3 Fermi gases; 3.3.1 Fermionic superuidity; 3.4 Non-alkali BECs; 3.4.1 Hydrogen; 3.4.2 Two-electron atoms; 3.4.3 Dipolar atoms; 3.5 Cold molecules; 3.5.1 Cooling molecules; 3.5.2 Quantum gases with dipolar interaction; 3.5.3 Tests of fundamental physics; 4 Helium; 4.1 The helium spectrum; 4.1.1 Helium laser spectroscopy; 4.2 Helium fine structure; 4.2.1 Microwave measurements; 4.2.2 Optical measurements 5.3.2 Sub-Hz lasers5.4 Trapped ions; 5.4.1 Ion traps; 5.4.2 Ion cooling; 5.5 Ion clocks; 5.5.1 General relativity tests; 5.5.2 Stability of fundamental constants; 6 Optical lattices and precise measurements; 6.1 Quantum transport in periodic potentials; 6.1.1 Bloch theorem and energy bands; 6.1.2 Dynamics of a Bloch wavepacket; 6.1.3 Bloch oscillations; 6.1.4 Josephson picture of the tight-binding limit; 6.2 Optical lattices; 6.3 Experiments with cold atoms; 6.3.1 Observation of Bloch oscillations; 6.3.2 Measurement of h/m with optical lattices; 6.3.3 Large-area atom interferometers Nuclear physics. http://id.loc.gov/authorities/subjects/sh85093024 Nuclear Physics https://id.nlm.nih.gov/mesh/D009686 Physique nucléaire. nuclear physics. aat SCIENCE Physics Quantum Theory. bisacsh Nuclear physics fast Fallani, L. (Leonardo), author. https://id.oclc.org/worldcat/entity/E39PBJdCmGqm3xRgK7GjXvXrv3 http://id.loc.gov/authorities/names/no2011160231 has work: Atomic physics (Text) https://id.oclc.org/worldcat/entity/E39PCGx6yVxbCYCjCMCQQ8kr4m https://id.oclc.org/worldcat/ontology/hasWork Print version: Inguscio, M. Atomic physics 9780198525844 (OCoLC)853505673 FWS01 ZDB-4-EBA FWS_PDA_EBA https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=637034 Volltext |
spellingShingle | Inguscio, M. Fallani, L. (Leonardo) Atomic physics : precise measurements and ultracold matter / 2.3 Laser cooling2.3.1 Radiation pressure; 2.3.2 Atomic beam deceleration; 2.3.3 Doppler cooling; 2.3.4 Sub-Doppler cooling; 2.3.5 Magneto-optical traps; 2.3.6 Laser cooling in multi-level atoms; 2.4 Laser-cooled atomic clocks; 2.4.1 Improving atomic fountain clocks; 2.5 Atom interferometry; 2.5.1 Gravity measurements; 2.5.2 Interferometers for inertial forces; 3 Bose-Einstein condensation; 3.1 Experimental techniques; 3.1.1 Magnetic traps; 3.1.2 Evaporative cooling; 3.1.3 Sympathetic cooling; 3.1.4 Atom-atom interactions and Feshbach resonances; 3.1.5 Imaging ultracold atoms 3.2 Bose-Einstein condensates3.2.1 BEC transition; 3.2.2 BEC excitations; 3.2.3 Superuidity; 3.2.4 Phase coherence; 3.2.5 BEC for precision measurements; 3.2.6 Interferometry with BECs; 3.3 Fermi gases; 3.3.1 Fermionic superuidity; 3.4 Non-alkali BECs; 3.4.1 Hydrogen; 3.4.2 Two-electron atoms; 3.4.3 Dipolar atoms; 3.5 Cold molecules; 3.5.1 Cooling molecules; 3.5.2 Quantum gases with dipolar interaction; 3.5.3 Tests of fundamental physics; 4 Helium; 4.1 The helium spectrum; 4.1.1 Helium laser spectroscopy; 4.2 Helium fine structure; 4.2.1 Microwave measurements; 4.2.2 Optical measurements 5.3.2 Sub-Hz lasers5.4 Trapped ions; 5.4.1 Ion traps; 5.4.2 Ion cooling; 5.5 Ion clocks; 5.5.1 General relativity tests; 5.5.2 Stability of fundamental constants; 6 Optical lattices and precise measurements; 6.1 Quantum transport in periodic potentials; 6.1.1 Bloch theorem and energy bands; 6.1.2 Dynamics of a Bloch wavepacket; 6.1.3 Bloch oscillations; 6.1.4 Josephson picture of the tight-binding limit; 6.2 Optical lattices; 6.3 Experiments with cold atoms; 6.3.1 Observation of Bloch oscillations; 6.3.2 Measurement of h/m with optical lattices; 6.3.3 Large-area atom interferometers Nuclear physics. http://id.loc.gov/authorities/subjects/sh85093024 Nuclear Physics https://id.nlm.nih.gov/mesh/D009686 Physique nucléaire. nuclear physics. aat SCIENCE Physics Quantum Theory. bisacsh Nuclear physics fast |
subject_GND | http://id.loc.gov/authorities/subjects/sh85093024 https://id.nlm.nih.gov/mesh/D009686 |
title | Atomic physics : precise measurements and ultracold matter / |
title_auth | Atomic physics : precise measurements and ultracold matter / |
title_exact_search | Atomic physics : precise measurements and ultracold matter / |
title_full | Atomic physics : precise measurements and ultracold matter / Massimo Inguscio, Leonardo Fallani. |
title_fullStr | Atomic physics : precise measurements and ultracold matter / Massimo Inguscio, Leonardo Fallani. |
title_full_unstemmed | Atomic physics : precise measurements and ultracold matter / Massimo Inguscio, Leonardo Fallani. |
title_short | Atomic physics : |
title_sort | atomic physics precise measurements and ultracold matter |
title_sub | precise measurements and ultracold matter / |
topic | Nuclear physics. http://id.loc.gov/authorities/subjects/sh85093024 Nuclear Physics https://id.nlm.nih.gov/mesh/D009686 Physique nucléaire. nuclear physics. aat SCIENCE Physics Quantum Theory. bisacsh Nuclear physics fast |
topic_facet | Nuclear physics. Nuclear Physics Physique nucléaire. nuclear physics. SCIENCE Physics Quantum Theory. Nuclear physics |
url | https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=637034 |
work_keys_str_mv | AT ingusciom atomicphysicsprecisemeasurementsandultracoldmatter AT fallanil atomicphysicsprecisemeasurementsandultracoldmatter |