High efficiency symmetric beam splitter for cold atoms with a standing wave light pulse sequence
arXiv:physics/0408011 · doi:10.1103/PhysRevA.71.043602
Abstract
In a recent experiment [1], it was observed that a sequence of two standing wave square pulses can split a BEC at rest into +/- 2 h_bar k diffraction orders with almost 100% efficiency. By truncating the Raman-Nath equations to a 2-state model, we provide an intuitive picture that explains this double square pulse beamsplitter scheme. We further show it is possible to optimize a standingwave multi square pulse sequence to efficiently diffract an atom at rest to symmetric superposition of +/- 2n h_bar k diffraction order with n>1. The approach is considered to be qualitatively different from the traditional light pulse schemes in the Bragg or the Raman-Nath region, and can be extended to more complex atomic optical elements that produce various tailored output momentum states from a cold atom source.
22 pages, 4 figures, 1 table
References in corpus (5)
- Sensitive Absolute Gravity Gradiometry Using Atom Interferometry
- An Atom Michelson Interferometer on a Chip Using a Bose-Einstein Condensate
- Contrast Interferometry Using Bose-Einstein Condensates to Measure h/m and the Fine Structure Constant
- Decoherence in a Talbot Lau interferometer: the influence of molecular scattering
- Momentum transfer using chirped standing wave fields: Bragg scattering
Cited by in corpus (45)
- Atom Interferometers
- Thermalization near integrability in a dipolar quantum Newton's cradle
- Atomtronic circuits: from many-body physics to quantum technologies
- Synthetic partial waves in ultracold atomic collisions
- Why momentum width matters for atom interferometry with Bragg pulses
- Demonstration of a moving guide based atom interferometer for rotation sensing
- Atom-wave diffraction between the Raman-Nath and the Bragg regime: Effective Rabi frequency, losses, and phase shifts
- Quantum rotation sensing with dual Sagnac interferometers in an atom-optical waveguide
- Precision Measurement of Transition Matrix Elements via Light Shift Cancellation
- A Bose-Einstein condensate interferometer with macroscopic arm separation
- Compact chip-scale guided cold atom gyrometers for inertial navigation: Enabling technologies and design study
- Interaction of electron beams with optical nanostructures and metamaterials: From coherent photon sources towards shaping the wave function
- Separation of Timescales in a Quantum Newton's Cradle
- Confinement effects in a guided-wave interferometer with millimeter-scale arm separation
- Exact nonequilibrium dynamics of finite-temperature Tonks-Girardeau gases
- A scalable Bose-Einstein condensate Sagnac interferometer in a linear trap
- Relaxation of Bosons in One Dimension and the Onset of Dimensional Crossover
- Optically guided beam splitter for propagating matter waves
- Thermalization of a quantum Newton's cradle in a one-dimensional quasicondensate
- Momentum-space engineering of gaseous Bose-Einstein condensates
- Theoretical analysis of a single and double reflection atom interferometer in a weakly-confining magnetic trap
- Increasing the coherence time of Bose-Einstein-condensate interferometers with optical control of dynamics
- Manipulating the momentum state of a condensate by sequences of standing wave pulses
- Energy-dependent 3-body loss in 1D Bose gases
- Anisotropic collisions of dipolar Bose-Einstein condensates in the universal regime
- Guided-Wave Sagnac Atom Interferometer with Large Area and Multiple Orbits
- Analysis of a free oscillation atom interferometer
- Quantum Atom Optics: Theory and Applications to Quantum Technology
- Composite acousto-optical modulation
- A matter wave Rarity-Tapster interferometer to demonstrate non-locality
- Benchmarks of Generalized Hydrodynamics for 1D Bose Gases
- Interferometric measurement of micro-g acceleration with levitated atoms
- Improved optical standing-wave beam splitters for dilute Bose-Einstein condensates
- Quantum Back-action Limits in Dispersively Measured Bose-Einstein Condensates
- Weak-Measurement-Induced Heating in Bose-Einstein Condensates
- Detection of Applied and Ambient Forces with a Matterwave Magnetic-Gradiometer
- Lattice-depth measurement using multi-pulse atom diffraction in and beyond the weakly diffracting limit
- Signatures of spatial inversion asymmetry of an optical lattice observed in matter-wave diffraction
- Calibrating the momentum width of a trapped Bose-Einstein condensate by one-dimensional optical lattice pulse sequences
- Non-Galilean response of Rashba coupled Fermi gases
- Characterizing ultra-narrow momentum of atoms by standing-wave light-pulse sequences
- Phase-Shift Plateaus in the Sagnac Effect for Matter Waves
- Globally optimal interferometry with lossy twin Fock probes
- Timescales and necessary conditions for hydrodynamization in one-dimensional Bose gases
- Atom interferometry using wavepackets with constant spatial displacements