2,492 research outputs found

    Tobacco use in pregnancy: a window of opportunity for prevention

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    Extended Coherence Time with Atom-Number Squeezed Sources

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    Coherence properties of Bose-Einstein condensates offer the potential for improved interferometric phase contrast. However, decoherence effects due to the mean-field interaction shorten the coherence time, thus limiting potential sensitivity. In this work, we demonstrate increased coherence times with number squeezed states in an optical lattice using the decay of Bloch oscillations to probe the coherence time. We extend coherence times by a factor of 2 over those expected with coherent state BEC interferometry. We observe quantitative agreement with theory both for the degree of initial number squeezing as well as for prolonged coherence times.Comment: 4 pages, 4 figure

    Observation of many-body localization of interacting fermions in a quasi-random optical lattice

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    We experimentally observe many-body localization of interacting fermions in a one-dimensional quasi-random optical lattice. We identify the many-body localization transition through the relaxation dynamics of an initially-prepared charge density wave. For sufficiently weak disorder the time evolution appears ergodic and thermalizing, erasing all remnants of the initial order. In contrast, above a critical disorder strength a significant portion of the initial ordering persists, thereby serving as an effective order parameter for localization. The stationary density wave order and the critical disorder value show a distinctive dependence on the interaction strength, in agreement with numerical simulations. We connect this dependence to the ubiquitous logarithmic growth of entanglement entropy characterizing the generic many-body localized phase.Comment: 6 pages, 6 figures + supplementary informatio

    Stability transitions for axisymmetric relative equilibria of Euclidean symmetric Hamiltonian systems

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    In the presence of noncompact symmetry, the stability of relative equilibria under momentum-preserving perturbations does not generally imply robust stability under momentum-changing perturbations. For axisymmetric relative equilibria of Hamiltonian systems with Euclidean symmetry, we investigate different mechanisms of stability: stability by energy-momentum confinement, KAM, and Nekhoroshev stability, and we explain the transitions between these. We apply our results to the Kirchhoff model for the motion of an axisymmetric underwater vehicle, and we numerically study dissipation induced instability of KAM stable relative equilibria for this system.Comment: Minor revisions. Typographical errors correcte

    Extracting Atoms on Demand with Lasers

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    We propose a scheme that allows to coherently extract cold atoms from a reservoir in a deterministic way. The transfer is achieved by means of radiation pulses coupling two atomic states which are object to different trapping conditions. A particular realization is proposed, where one state has zero magnetic moment and is confined by a dipole trap, whereas the other state with non-vanishing magnetic moment is confined by a steep microtrap potential. We show that in this setup a predetermined number of atoms can be transferred from a reservoir, a Bose-Einstein condensate, into the collective quantum state of the steep trap with high efficiency in the parameter regime of present experiments.Comment: 11 pages, 8 figure

    Vacuum Distillation Methods For Lube Oils Increase Turbomachinery Reliability.

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    LecturePg. 41-50The lube oils in self-contained reservoirs for turbomachinery in hydrocarbon processing plants are subject to contamination and deterioration from airborne dust, component debris, system corrosion, heat, and water. Oil supplies associated with certain gas compression sealing systems are further exposed to potential dilution with lighter hydrocarbons, and gaseous dilutants such as Hâ‚‚S. Excess water and acquired hydrocarbon constituents which adversely influence the viscosity and other characteristics of turbomachinery lube oils must be removed periodically, if machinery distress is to be avoided. As part of a determined effort to maintain the reliability of critically important turbomachinery, a major petrochemical complex has implemented a lube oil quality assurance program. Vacuum distillation equipment is used for oil purification, and periodic analysis of 36 reservoirs is employed to quantify lube oil condition. A major refinery in the same geographic area is developing a program with similar goals. The relevant experience accrued at both facilities is described. What is required to have consistently good results and to obtain the maximum economic benefits is illustrated. This can be achieved by evaluating and selecting an appropriately designed vacuum oil purifier and following up by implementing a rigorous analysis program

    Metal nanofilm in strong ultrafast optical fields

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    We predict that a metal nanofilm subjected to an ultrashort (single oscillation) optical pulse of a high field amplitude ∼3V/A˚\sim 3 \mathrm{V/\AA} at normal incidence undergoes an ultrafast (at subcycle times ≲1fs\lesssim 1 \mathrm{fs}) transition to a state resembling semimetal. Its reflectivity is greatly reduced, while the transmissivity and the optical field inside the metal are greatly increased. The temporal profiles of the optical fields are predicted to exhibit pronounced subcycle oscillations, which are attributed to the Bloch oscillations and formation of the Wannier-Stark ladder of electronic states. The reflected, transmitted, and inside-the-metal pulses have non-zero areas approaching half-cycle pulses. The effects predicted are promising for applications to nanoplasmonic modulators and field-effect transistors with petahertz bandwidth
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