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Wednesday, August 12, 2020 | History

2 edition of Spin Squeezing and Non-linear Atom Interferometry with Bose-Einstein Condensates found in the catalog.

Spin Squeezing and Non-linear Atom Interferometry with Bose-Einstein Condensates

by Christian Gross

  • 224 Want to read
  • 14 Currently reading

Published by Springer Berlin Heidelberg in Berlin, Heidelberg .
Written in English

    Subjects:
  • Physics,
  • Quantum Gases and Condensates,
  • Measurement Science and Instrumentation

  • Edition Notes

    Statementby Christian Groß
    SeriesSpringer Theses
    ContributionsSpringerLink (Online service)
    The Physical Object
    Format[electronic resource] /
    ID Numbers
    Open LibraryOL27088774M
    ISBN 109783642256370

    Download Free eBook:Label-free and Multi-parametric Monitoring of Cell-based Assays with Substrate-embedded Sensors (Springer Theses) - Free epub, mobi, pdf ebooks download, ebook torrents download. Reduction of quantum noise in one spin component—or single-axis squeezing—is a valuable tool for enhancing the sensitivity of interferometers and atomic clocks [1,2]. It has been recently implemented for ultracold atomic Bose-Einstein condensate(BEC)interferometers[3–5].Thistypeofquantum noise reduction reduces the .

      The topics covered include: introduction to second quantization of many-body systems, Bose-Einstein condensation, the order parameter and Gross-Pitaevskii equation, spin dynamics of atoms, spinor Bose-Einstein condensates, atom diffraction, atomic interferometry beyond the standard limit, quantum simulation, squeezing and entanglement with. Planar quantum squeezing and atom interferometry Item Preview remove-circle These states extend the concept of spin squeezing to any two conjugate spin directions. We show that planar quantum squeezing can be achieved experimentally as the ground state of a Bose-Einstein condensate in two coupled potential wells with a critical attractive.

    Spin Squeezing and Non-linear Atom Interferometry with Bose-Einstein Condensates. Home. WorldCat Home About WorldCat Help. Search. Search for Library Items Search for Lists Search for This book examines the realization of spin-squeezed states suitable for atom interferometry. Recipient of the German Physical Society's Dissertation.   Interferometers with atomic ensembles are an integral part of modern precision metrology. However, these interferometers are fundamentally restricted by the shot noise limit, which can only be overcome by creating quantum entanglement among the atoms. We used spin dynamics in Bose-Einstein condensates to create large ensembles of up to pair .


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Spin Squeezing and Non-linear Atom Interferometry with Bose-Einstein Condensates by Christian Gross Download PDF EPUB FB2

Spin Squeezing and Non-linear Atom Interferometry with Bose-Einstein Condensates. Authors This work reports on the realization of spin-squeezed states suitable for atom interferometry.

Spin squeezing was generated on the basis of motional and spin degrees of freedom, whereby the latter allowed the implementation of a full interferometer. Spin Squeezing and Non-linear Atom Interferometry with Bose-Einstein Condensates (Springer Theses) - Kindle edition by Groß, Christian.

Download it once and read it on your Kindle device, PC, phones or tablets. Use features like bookmarks, note taking and highlighting while reading Spin Squeezing and Non-linear Atom Interferometry with Bose-Einstein Condensates Manufacturer: Springer. Spin Squeezing and Non-linear Atom Interferometry with Bose-Einstein Condensates.

Squeezing Two Mean Field Modes of a Bose–Einstein Condensate. Pages Groß, Christian Book Title Spin Squeezing and Non-linear Atom Interferometry with Bose-Einstein Condensates Authors.

Spin Squeezing and Non-linear Atom Interferometry with Bose-Einstein Condensates (Springer Theses: Recognizing Outstanding Ph.D. Research) 1st Edition by Christian Groß (Author) ISBN Cited by: 6. Request PDF | Spin Squeezing and Non-linear Atom Interferometry with Bose-Einstein Condensates | Interferometry is the most precise measurement technique known today.

It is based on interference. Spin Squeezing and Non-linear Atom Interferometry with Bose-Einstein Condensates By (author) Christian Groß. ISBN 13   Watch Spin Squeezing and Non-linear Atom Interferometry with Bose-Einstein Condensates (Springer Theses) - calvinwilkinson on Dailymotion.

Spin Squeezing and Non-linear Atom Interferometry with Bose-Einstein Condensates Spin Squeezing and Non-linear Atom Interferometry with Bose-Einstein Condensates: Pub Date: DOI: / Bibcode. Spin Squeezing and Non-linear Atom Interferometry with Bose-Einstein Condensates.

First Online: 12 January Downloads; Part of the Springer Theses book series (Springer Theses) Abstract. Gross C Spin squeezing and non-linear atom interferometry with Bose–Einstein condensates PhD Thesis University of Heidelberg [93] Gross C Spin Squeezing and Nonlinear Atom Interferometry with Bose–Einstein Condensates (Springer Thesis) (Berlin: Springer).

Spin squeezing and non-linear atom interferometry with Bose-Einstein condensates. We demonstrate a novel non-linear atom interferometer for Bose-Einstein condensates whose linear analog – the Ramsey interferometer – is used for the definition of the time standard. Within the non-linear interferometer we detect a large entangled state.

Get this from a library. Spin squeezing and non-linear atom interferometry with Bose-Einstein condensates. [Christian Groß, (Physicist)] -- Interferometry, the most precise measurement technique known today, exploits the wave-like nature of the atoms or photons in the interferometer.

As expected from the laws of quantum mechanics, the. A team from the University of Heidelberg's Kirchhoff Institute for Physics now demonstrates spin squeezed states suitable for atomic interferometry by splitting a Bose–Einstein condensate.

PDF Download Introduction to Bose--Einstein Correlations and Subatomic Interferometry Download. Ottephid. Follow. 5 years ago Spin Squeezing and Non-linear Atom Interferometry with Bose-Einstein Condensates (Springer Theses) calvinwilkinson Collection Book Atlas of Histology with Functional and Clinical Correlations.

Florent Deondre. Spin Squeezing and Non-linear Atom Interferometry with Bose-Einstein Condensates: Interferometry, the most precise measurement technique known today, exploits the wave-like nature of the atoms or photons in the interferometer. As expected from the laws of quantum mechanics, the granular, particle-like features of the individually independent atoms or.

This book presents the lectures and notes from the Enrico Fermi school "Atom Interferometry", held in Varenna, Italy, in July The aim of the school was to cover basic experimental and theoretical aspects and to provide an updated review of current activities in the field as well as main achievements, open issues and future prospects.

Spin squeezing, entanglement and quantum metrology with Bose Einstein condensates To cite this article: Christian Gross J. Phys. B: At. Mol. Opt. Phys. 45 View the article online for updates and enhancements. Related content Optically trapped atom interferometry using the clock transition of large 87Rb Bose Einstein condensates.

Mach-Zehnder interferometry with in teracting trapped Bose-Einstein condensates Julian Grond, 1, 2, 3 Ulrich Hohenester, 1 J¨ org Schmiedmay er, 3 and Augusto Smerzi 4. Spin Squeezing and Non-linear Atom Interferometry with Bose-Einstein Condensates (Springer Theses) Polariton Physics: From Dynamic Bose – Einstein Condensates in Strongly‐Coupled Light–Matter Systems to Polariton Lasers (Springer Series in Optical Sciences ()).

Looking for books by Christian Gross. See all books authored by Christian Gross, including Falconry and Birds of Prey in the Gulf, and Spin Squeezing and Non-Linear Atom Interferometry with Bose-Einstein Condensates, and more on.

Read "Spin Squeezing and Non-linear Atom Interferometry with Bose-Einstein Condensates" by Christian Groß available from Rakuten Kobo. Interferometry, the most precise measurement technique known today, exploits the wave-like nature of Brand: Springer Berlin Heidelberg.This thesis demonstrates a full Mach–Zehnder interferometer with interacting Bose–Einstein condensates confined on an atom chip.

It relies on the coherent manipulation of atoms trapped in a magnetic double-well potential, for which the author developed a novel type of beam splitter. Particle-wave duality enables the construction of interferometers for matter waves, which .PHYSICAL REVIEW A 95, () Stueckelberg interferometry using periodically driven spin-orbit-coupled Bose-Einstein condensates Abraham J.

Olson, 1David B. Blasing, Chunlei Qu,2,3 Chuan-Hsun Li,4 Robert J. Niffenegger, Chuanwei Zhang,2 and Yong P. Chen1,4 5 * 1Department of Physics and Astronomy, Purdue University, West Lafayette, IndianaUSA.