1,739 research outputs found
Properties of large 7079 aluminum alloy forgings in a cryogenic environment
Forged aluminum alloys for pump impeller and inducer applications in cryogenic liquid propellant rocket engine
Application of Alloy 718 in M-1 engine components
Alloy 718 applied to components of M-1 rocket engin
Cross-Dimensional relaxation in Bose-Fermi mixtures
We consider the equilibration rate for fermions in Bose-Fermi mixtures
undergoing cross-dimensional rethermalization. Classical Monte Carlo
simulations of the relaxation process are performed over a wide range of
parameters, focusing on the effects of the mass difference between species and
the degree of initial departure from equilibrium. A simple analysis based on
Enskog's equation is developed and shown to be accurate over a variety of
different parameter regimes. This allows predictions for mixtures of commonly
used alkali atoms.Comment: 7 pages, 4 figures, uses Revtex 4. This is a companion paper to [PRA
70, 021601(R) (2004)] (cond-mat/0405419
Optical microscopy via spectral modifications of a nano-antenna
The existing optical microscopes form an image by collecting photons emitted
from an object. Here we report on the experimental realization of microscopy
without the need for direct optical communication with the sample. To achieve
this, we have scanned a single gold nanoparticle acting as a nano-antenna in
the near field of a sample and have studied the modification of its intrinsic
radiative properties by monitoring its plasmon spectrum.Comment: 6 pages, 4 figures (color
Multiply quantized vortices in trapped Bose-Einstein condensates
Vortex configurations in rotating Bose-Einstein condensed gases trapped in
power-law and anharmonic potentials are studied. When the confining potential
is steeper than harmonic in the plane perpendicular to the axis of rotation,
vortices with quantum numbers larger than one are energetically favorable if
the interaction is weak enough. Features of the wave function for small and
intermediate rotation frequencies are investigated numerically.Comment: 9 pages, 6 figures. Revised and extended article following referee
repor
Dynamic depletion in a Bose condensate via a sudden increase of the scattering length
We examine the time-dependent quantum depletion of a trapped Bose condensate
arising from a rapid increase of the scattering length. Our solution indicates
that a significant buildup of incoherent atoms can occur within a
characteristic time short compared with the harmonic trap period. We discuss
how the depletion density and the characteristic time depend on the physical
parameters of the condensate
Self-Binding Transition in Bose Condensates with Laser-Induced ``Gravitation''
In our recent publication (D. O'Dell, et al, Phys. Rev. Lett. 84, 5687
(2000)) we proposed a scheme for electromagnetically generating a self-bound
Bose-Einstein condensate with 1/r attractive interactions: the analog of a Bose
star. Here we focus upon the conditions neccessary to observe the transition
from external trapping to self-binding. This transition becomes manifest in a
sharp reduction of the condensate radius and its dependence on the laser
intensity rather that the trap potential.Comment: 5 pages, 2 figures: slightly enhanced text: more explanatio
Breakdown of superfluidity of an atom laser past an obstacle
The 1D flow of a continuous beam of Bose-Einstein condensed atoms in the
presence of an obstacle is studied as a function of the beam velocity and of
the type of perturbing potential (representing the interaction of the obstacle
with the atoms of the beam). We identify the relevant regimes:
stationary/time-dependent and superfluid/dissipative; the absence of drag is
used as a criterion for superfluidity. There exists a critical velocity below
which the flow is superfluid. For attractive obstacles, we show that this
critical velocity can reach the value predicted by Landau's approach. For
penetrable obstacles, it is shown that superfluidity is recovered at large beam
velocity. Finally, enormous differences in drag occur when switching from
repulsive to attractive potential.Comment: 15 pages, 6 figure
Effective-action approach to a trapped Bose gas
The effective-action formalism is applied to a gas of bosons. The equations
describing the condensate and the excitations are obtained using the loop
expansion for the effective action. For a homogeneous gas the Beliaev expansion
in terms of the diluteness parameter is identified in terms of the loop
expansion. The loop expansion and the limits of validity of the well-known
Bogoliubov and Popov equations are examined analytically for a homogeneous
dilute Bose gas and numerically for a gas trapped in a harmonic-oscillator
potential. The expansion to one-loop order, and hence the Bogoliubov equation,
is shown to be valid for the zero-temperature trapped gas as long as the
characteristic length of the trapping potential exceeds the s-wave scattering
length.Comment: 17 pages, 10 figures, accepted for publication in Phys. Rev.
From Feshbach-Resonance Managed Bose-Einstein Condensates to Anisotropic Universes: Some Applications of the Ermakov-Pinney equation with Time-Dependent Nonlinearity
In this work we revisit the topic of two-dimensional Bose-Einstein
condensates under the influence of time-dependent magnetic confinement and
time-dependent scattering length. A moment approach reduces the examination of
moments of the wavefunction (in particular, of its width) to an Ermakov-Pinney
(EP) ordinary differential equation (ODE). We use the well-known structure of
the solutions of this nonlinear ODE to ``engineer'' trapping and interatomic
interaction conditions that lead to condensates dispersing, breathing or even
collapsing. The advantage of the approach is that it is fully tractable
analytically, in excellent agreement with our numerical observations. As an
aside, we also discuss how similar time-dependent EP equations may arise in the
description of anisotropic scalar field cosmologies.Comment: 9 pages, 4 figure
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