Zobrazeno 1 - 6
of 6
pro vyhledávání: '"Sean S. Hodgman"'
Publikováno v:
Physical Review Research, Vol 6, Iss 2, p L022003 (2024)
A key set of observables for investigating quantum systems are the n-body correlation functions, which provide a powerful tool for experimentally determining coherence and directly probing the many-body wave function. While the (bosonic) correlations
Externí odkaz:
https://doaj.org/article/099bcc33707948078311004948c0d9a0
Autor:
Henrik P. Lüschen, Pranjal Bordia, Sean S. Hodgman, Michael Schreiber, Saubhik Sarkar, Andrew J. Daley, Mark H. Fischer, Ehud Altman, Immanuel Bloch, Ulrich Schneider
Publikováno v:
Physical Review X, Vol 7, Iss 1, p 011034 (2017)
In the presence of disorder, an interacting closed quantum system can undergo many-body localization (MBL) and fail to thermalize. However, over long times, even weak couplings to any thermal environment will necessarily thermalize the system and era
Externí odkaz:
https://doaj.org/article/a78bd5188c4342b6a6644c38c97d16d4
Autor:
Kieran F. Thomas, Bryce M. Henson, Yu Wang, Robert J. Lewis-Swan, Karen V. Kheruntsyan, Sean S. Hodgman, Andrew G. Truscott
Publikováno v:
The European Physical Journal D. 76
We present an experimentally viable approach to demonstrating quantum non-locality in a matter wave system via a Rarity-Tapster interferometer using two $s$-wave scattering halos generated by colliding helium Bose-Einstein condensates. The theoretica
Autor:
Kieran F. Thomas, Zhuoxian Ou, Bryce M. Henson, Angela A. Baiju, Sean S. Hodgman, Andrew G. Truscott
We report on the achievement of quantum degeneracy in both components of a Bose-Fermi mixture of metastable helium atoms, $^4$He* and $^3$He*. Degeneracy is achieved via Doppler cooling and forced evaporation for $^4$He*, and sympathetically cooling
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::4865972d5e794a96058e8bb3b875129f
Autor:
Liam A. Fuderer, Liangwei Wang, James S. Stuart, Morgan P. Hedges, Andrew G. Truscott, Sean S. Hodgman
Publikováno v:
Optics Continuum. 1:306
We demonstrate a simple design for an in-fibre Fabry-Perot interferometer (FPI) equivalent, constructed by splicing together two ports of a 99:1 in-fibre beamsplitter to form a fibre ring resonator (FRR). A Peltier device is used to heat a length of
Autor:
Michael, Schreiber, Sean S, Hodgman, Pranjal, Bordia, Henrik P, Lüschen, Mark H, Fischer, Ronen, Vosk, Ehud, Altman, Ulrich, Schneider, Immanuel, Bloch
Publikováno v:
Science (New York, N.Y.). 349(6250)
Many-body localization (MBL), the disorder-induced localization of interacting particles, signals a breakdown of conventional thermodynamics because MBL systems do not thermalize and show nonergodic time evolution. We experimentally observed this non