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Related papers: Rubidium "whiskers" in a vapor cell

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We demonstrate experimentally the evaporative cooling of a few hundred rubidium 87 atoms in a single-beam microscopic dipole trap. Starting from 800 atoms at a temperature of 125microKelvins, we produce an unpolarized sample of 40 atoms at…

Quantum Gases · Physics 2015-06-16 R. Bourgain , J. Pellegrino , A. Fuhrmanek , Y. R. P. Sortais , A. Browaeys

The bulk single crystals of $S = 1$ chain compound Ni(C$_3$H$_{10}$N$_2$)$_2$NO$_2$ClO$_4$ are grown by using a slow evaporation method at a constant temperature and a slow cooling method. It is found that the optimum condition of growing…

Strongly Correlated Electrons · Physics 2013-11-13 W. Tao , L. M. Chen , X. M. Wang , C. Fan , W. P. Ke , X. G. Liu , Z. Y. Zhao , Q. J. Li , X. F. Sun

Little is known about morphological instability of a solidification front during the crystal growth of a thin film of flowing supercooled liquid with a free surface: for example, the ring-like ripples on the surface of icicles. The length…

Fluid Dynamics · Physics 2015-05-27 K. Ueno , M. Farzaneh , S. Yamaguchi , H. Tsuji

Crystalline nanoparticles of cadmium iodide where suspended in the amorphous matrix of antimony trisulphide. Both materials are layered structured and have large band-gaps however cadmium iodide exhibits polytypism, i.e. it exists in…

Materials Science · Physics 2015-06-25 P. Arun

We present a very sensitive and scalable method to measure the population of highly excited Rydberg states in a thermal vapor cell of rubidium atoms. We detect the Rydberg ionization current in a 5 mm electrically contacted cell. The…

Atomic Physics · Physics 2015-06-11 D. Barredo , H. Kübler , R. Daschner , R. Löw , T. Pfau

Optical two-dimensional coherent spectroscopy (2DCS) has become a powerful tool for studying energy level structure, dynamics, and coupling in many systems including atomic ensembles. Various types of two-dimensional (2D) spectra, including…

Atomic Physics · Physics 2022-05-25 Jieli Yan , Stephen Revesz , Danfu Liang , Hebin Li

A layer of monodisperse circular steel disks in a nearly square horizontal cell forms, for shear amplitudes SA $\le$ 0.08, hexagonal close-packed crystallites that grow and merge until a single crystal fills the container. Increasing the…

Soft Condensed Matter · Physics 2024-11-07 Siyuan Su , Jie Zhang , Charles Radin , Harry L. Swinney

We demonstrate strongly collimated beaming, at audible frequencies, in a three-dimensional acoustic phononic crystal where the wavelength is commensurate with the crystal elements; the crystal is a seemingly simple rectangular cuboid…

The splitting of a single optical vortex into four separate ones in a singular beam is theoretically and experimentally described for the propagation of light obliquely through a uniaxial crystal. Also we found the condition under which the…

Optics · Physics 2009-11-13 T. Fadeyeva , A. Rubass , Yu. Egorov , A. Volyar , G. Swartzlander

Ultrasoft colloids typically do not spontaneously crystallize, but rather vitrify, at high concentrations. Combining in-situ rheo-SANS experiments and numerical simulations we show that shear facilitates crystallization of colloidal star…

Soft Condensed Matter · Physics 2018-02-21 J. Ruiz-Franco , J. Marakis , N. Gnan , J. Kohlbrecher , M. Gauthier , M. P. Lettinga , D. Vlassopoulos , E. Zaccarelli

A crystal of pure nickel grows from its melt at a rate that reaches 70 meters per second. This extraordinary growth rate has led to the suggestion that metallic crystals might provide the next generation of phase change materials. The huge…

Materials Science · Physics 2018-10-17 Gang Sun , Jenny Xu , Peter Harrowell

The structural and electronic properties of Rutherfordium, the newest group IV B element, have been evaluated by first principles density functional theory in scalar relativistic formalism with and without spin-orbit coupling and compared…

Materials Science · Physics 2011-06-17 Jyoti Gyanchandani , S. K. Sikka

We present observations of 11 high redshift quasars ($3.9 \la z \la 5.0$) observed with low spectral resolution in the restframe ultraviolet using FORS 1 at the VLT UT 1. The emission-line fluxes of strong permitted and intercombination…

Astrophysics · Physics 2009-11-07 M. Dietrich , I. Appenzeller , F. Hamann , J. Heidt , K. Jaeger , M. Vestergaard , S. J. Wagner

We have trapped rubidium atoms in the magnetic field produced by a superconducting atom chip operated at liquid Helium temperatures. Up to $8.2\cdot 10^5$ atoms are held in a Ioffe-Pritchard trap at a distance of 440 $\mu$m from the chip…

A growing body of experimental work indicates that physical vapor deposition provides an effective route for preparation of stable glasses, whose properties correspond in some cases to those expected for glasses that have been aged for…

Soft Condensed Matter · Physics 2015-06-16 Ivan Lyubimov , Mark D. Ediger , Juan J. de Pablo

We demonstrate the implementation of a ring cavity to enhance the efficiency of parametric four-wave mixing in rubidium. Using an input coupler with 95% reflectance, a finesse of 19.6$\pm$0.5 is achieved with a rubidium cell inside. This…

Atomic Physics · Physics 2017-03-08 E. Brekke , S. Potier

We study the structural properties of a quasi-one-dimensional classical Wigner crystal, confined in the transverse direction by a parabolic potential. With increasing density, the one-dimensional crystal first splits into a zigzag crystal…

Mesoscale and Nanoscale Physics · Physics 2011-07-26 Alexios D. Klironomos , Julia S. Meyer

Liquid in grooved capillaries, made by e.g. inserting a plate in a cylindrical tube, exhibits unusual spreading and flow properties. One example is capillary rise, where a long, upward tongue on top of the usual meniscus has been observed…

Condensed Matter · Physics 2009-10-22 Lei-Han Tang , Yu Tang

Diamond is a material in use at many nuclear and high energy facilities due to its inherent radiation tolerance and ease of use. We have characterized detectors based on chemical vapor deposition (CVD) diamond before and after proton…

Instrumentation and Detectors · Physics 2019-10-18 RD42 Collaboration , L. Bäni , A. Alexopoulos , M. Artuso , F. Bachmair , M. Bartosik , H. Beck , V. Bellini , V. Belyaev , B. Bentele , A. Bes , J. -M. Brom , M. Bruzzi , G. Chiodini , D. Chren , V. Cindro , G. Claus , J. Collot , J. Cumalat , A. Dabrowski , R. D'Alessandro , D. Dauvergne , W. de Boer , C. Dorfer , M. Dünser , G. Eigen , V. Eremin , G. Forcolin , J. Forneris , L. Gallin-Martel , M. -L. Gallin-Martel , K. K. Gan , M. Gastal , M. Goffe , J. Goldstein , A. Golubev , A. Gorišek , E. Grigoriev , J. Grosse-Knetter , A. Grummer , M. Guthoff , B. Hiti , D. Hits , M. Hoeferkamp , T. Hofmann , J. Hosselet , F. Hügging , C. Hutton , J. Janssen , H. Kagan , K. Kanxheri , R. Kass , M. Kis , G. Kramberger , S. Kuleshov , A. Lacoste , S. Lagomarsino , A. Lo Giudice , I. López Paz , E. Lukosi , C. Maazouzi , I. Mandić , C. Mathieu , M. Menichelli , M. Mikuž , A. Morozzi , J. Moss , R. Mountain , A. Oh , P. Olivero , D. Passeri , H. Pernegger , R. Perrino , F. Picollo , M. Pomorski , R. Potenza , A. Quadt , F. Rarbi , A. Re , M. Reichmann , S. Roe , D. A. Sanz Becerra , M. Scaringella , C. J. Schmidt , S. Schnetzer , E. Schioppa , S. Sciortino , A. Scorzoni , S. Seidel , L. Servoli , D. S. Smith , B. Sopko , V. Sopko , S. Spagnolo , S. Spanier , K. Stenson , R. Stone , B. Stugu , C. Sutera , M. Traeger , W. Trischuk , M. Truccato , C. Tuvè , J. Velthuis , N. Venturi , S. Wagner , R. Wallny , J. C. Wang , N. Wermes , M. Yamouni , J. Zalieckas , M. Zavrtanik

The Casimir-Polder (CP) potential and transition rates of a Rydberg atom above a plane metal surface at finite temperature are discussed. As an example, the CP potential and transition rates of a rubidium atom above a copper surface at room…

Quantum Physics · Physics 2010-07-22 J. A. Crosse , Simen Å. Ellingsen , Kate Clements , Stefan Y. Buhmann , Stefan Scheel
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