ultracold-atoms.nbi.ku.dk
Precision Measurements with Ultracold Atoms – University of Copenhagen
Precision Measurements with Ultracold Atoms – University of Copenhagen. The group works with experimental setups in the laboratory, where the atoms are trapped in a magnetic field, where they are held by precise beams of laser light and are cooled down to near absolute zero, minus 273 degrees Celsius. The result is an atomic clock that is now so precise that it only loses one second every 300 million years. Research in the group. Read about the group's research. Publications by the group.
ultracold.at
Ultracold Atoms and Quantum Gases Group, Innsbruck
ultracold.com
ultracold.com -
ultracold.deviantart.com
ultracold (Oleg Saakyan) - DeviantArt
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ultracold.jqi.umd.edu
Quantum matter from atomic gases – Spielman research group
Darr; Skip to Main Content. RbLi: heavy and light. ICAP 2014 Summer School. Ultracold atoms are a very different sort of system than conventional materials, composed of a few hundred to a few hundred million atoms, with densities ranging from 10. And at temperatures from below 1 nK to a couple uK. These atomic systems are unique in the simplicity of their underlying Hamiltonian along with a singular capacity for controlling and engineering their quantum degrees of freedom. Read more ›. The internal degre...
ultracold.lassp.cornell.edu
Home | ultracold @ cornell
Mukund explains Zeno work on 'Science Goes to the Movies'. Laura and Airlia are awarded NSF graduate fellowships. Congrats! Paper on SU(1,1) phonon interferometry on arXiv. Ivaylo wins the Yennie Prize. Congrats, Ivaylo! CQNC paper featured as Editor's Suggestion in Physical Review A. Paper on Measurement-induced localization is published in Physical Review Letters. We have openings for postdocs and graduate students. Interested candidates should email mukundv@cornell.edu.
ultracold.org
Quantum Many-Body Dynamics | User Friendly -- Numerically Exact -- Highly Efficient
Skip to main content. User Friendly - Numerically Exact - Highly Efficient. MCTDHB in a nutshell. MCTDHB in a nutshell. A comprehensive and intuitive description of MCTDHB. Read more. Phantom vortices: hidden quantized vorticity in many-body systems. Phantom vortices: hidden quantized vorticity in many-body systems. Emergence of phantom vortices in the time evolution of the density, natural orbitals, and Sg. What R-MCTDHB is and what it can do. Phantom Vortices video featured at APS March meeting.
ultracold.physics.berkeley.edu
UC Berkeley Ultracold Atomic Physics : Home Page
UC Berkeley Ultracold Atomic Physics. E3: cQED, Optomechanics. E5: Optical Kagome Lattice. E6: Return of the Jedi. E1: Spinor Rubidium BEC. AMO Seminar (PHYS 290F). Lars Commins Memorial Award in Experimental Physics for 2014-15 given to Sydney Schreppler. Also, Student Service Award for 2014-15 given to Sydney Schreppler. Severin Daiss, visiting student from Heidelberg, completes Masters' thesis on atom optics in triangular and kagome lattices, complete with most recent experimental data! Our research f...
ultracold.physics.sunysb.edu
Prof. Dominik Schneble - Ultracold Atomic Physics - Stony Brook University
Dept of Physics and Astronomy. Stony Brook, NY 11794-3800. Tel 631 632-4497 and -8043.
ultracold.physics.utoronto.ca
Toronto Ultra-cold Atoms Lab
Above:] Our recent paper on spin transport in a strongly interacting Fermi gas. Investigates how transverse spin currents are twisted by the spins that are responsible for their generation (a). We measure the Leggett-Rice parameter gamma that characterizes this precession (b), as well as the transverse spin diffusivity (c), as a function of temperature and interaction parameter kFa. More details can be found in Trotzky et al, PRL 114. Above:] Observation of laser cooling and trapping at 405nm. Between th...
ultracold.quantumlah.org
Group II Ultracold Gas | Gauge fields, nuclear spin manipulation
Group II Ultracold Gas. Gauge fields, nuclear spin manipulation. Positions & job offers. Welcome to the Group II Ultracold Gas (G2UG) group pages. February 21, 2011. Research activities are focused on Group II Ultracold Gas. G2UG) Group II atoms -like Alkaline-earth or Rare-earth atoms- have two electrons in their valence shell. As a consequence the atom ground-state has no electronic angular momentum. Leading to Spinless 3D quantum transport in ordered or disordered systems. The first G2UG project has s...