Multi Mode Interferometer for Guided Matter Waves
arXiv:quant-ph/0107124 · doi:10.1103/PhysRevLett.88.100401
Abstract
We describe the fundamental features of an interferometer for guided matter waves based on Y-beam splitters and show that, in a quasi two-dimensional regime, such a device exhibits high contrast fringes even in a multi mode regime and fed from a thermal source.
Final version (accepted to PRL)
Cited by in corpus (81)
- Direct Observation of Tunneling and Nonlinear Self-Trapping in a single Bosonic Josephson Junction
- Atom Interferometers
- Atom interferometry with Bose-Einstein condensates in a double-well potential
- Bose-Einstein condensation in a circular waveguide
- Thermally induced spin flips above an atom chip
- Physics with Coherent Matter Waves
- Adiabatic radio frequency potentials for the coherent manipulation of matter waves
- Atomtronic circuits: from many-body physics to quantum technologies
- Bose-Einstein condensation dynamics from the numerical solution of the Gross-Pitaevskii equation
- Demonstration of a moving guide based atom interferometer for rotation sensing
- Optimal quantum control of Bose Einstein condensates in magnetic microtraps
- Nonlinear Resonant Transport of Bose Einstein Condensates
- Phase Sensitive Recombination of Two Bose-Einstein Condensates on an Atom Chip
- A trajectory-based understanding of quantum interference
- Interferometer-Type Structures for Guided Atoms
- Ultimate decoherence border for matter-wave interferometry
- Trapping of Ultracold Atoms in a Hollow-core Photonic Crystal Fiber
- Compact chip-scale guided cold atom gyrometers for inertial navigation: Enabling technologies and design study
- Entangling strings of neutral atoms in 1D atomic pipeline structures
- Manipulation of ultracold atoms in dressed adiabatic radio frequency potentials
- Single-atom detection using whispering gallery modes of microdisk resonators
- Integrated coherent matter wave circuits
- Atom interferometry with trapped Bose-Einstein condensates: Impact of atom-atom interactions
- A fundamental limit for integrated atom optics with Bose-Einstein condensates
- Dynamics of one-dimensional Bose liquids: Andreev-like reflection at Y-junctions and absence of the Aharonov-Bohm effect
- Transporting, splitting and merging of atomic ensembles in a chip trap
- Wavepacket dynamics in energy space of a chaotic trimeric Bose-Hubbard system
- Quasi-condensate growth on an atom chip
- Spin flip lifetimes in superconducting atom chips: BCS versus Eliashberg theory
- Cold atoms probe the magnetic field near a wire
- Bidirectional propagation of cold atoms in a "stadium" shaped magnetic guide
- A Smooth, Inductively Coupled Ring Trap for Atoms
- Microwave guiding of electrons on a chip
- Barrier transmission for the one-dimensional nonlinear Schrödinger equation: resonances and transmission profiles
- Classical aspects of ultracold atom wavepacket motion through microstructured waveguide bends
- Coherence Properties of Guided-Atom Interferometers
- Coherence length of an elongated condensate: a study by matter-wave interferometry
- OCTBEC - A Matlab toolbox for optimal quantum control of Bose-Einstein condensates
- QEngine: An open-source C++ Library for Quantum Optimal Control of Ultracold Atoms
- Wave function recombination instability in cold atom interferometers
- Realizing a stable magnetic double-well potential on an atom chip
- Symmetric micro-wave potentials for interferometry with thermal atoms on a chip
- Simultaneous optical trapping and detection of atoms by microdisk resonators
- Time domain deBroglie wave interferometry along a magnetic guide
- Phase coherence in quasicondensate experiments: an ab initio analysis via the stochastic Gross-Pitaevskii equation
- Limits to phase resolution in matter wave interferometry
- Decoherence of cold atomic gases in magnetic micro-traps
- Quantum interference within the complex quantum Hamilton-Jacobi formalism
- Transport of a quantum degenerate heteronuclear Bose-Fermi mixture in a harmonic trap
- Theory of a one-dimensional double-X atom interferometer
- Deterministic Entanglement via Molecular Dissociation in Integrated Atom Optics
- Towards a guided atom interferometer based on a superconducting atom chip
- State-Insensitive Trapping of Alkaline-Earth Atoms in a Nanofiber-Based Optical Dipole Trap
- Matter-wave recombiners for trapped Bose-Einstein condensates
- Decoherence of Bose-Einstein condensates in microtraps
- Bose-Einstein condensation in a mm-scale Ioffe-Pritchard trap
- Birth of a quasi-stationary black hole in an outcoupled Bose-Einstein condensate
- Atomic interferometer based on optical tweezers
- Perspectives of Ultra Cold Atoms Trapped in Magnetic Micro Potentials
- Optimized coupling of cold atoms into a fiber using a blue-detuned hollow-beam funnel
- Asymmetric double-well potential for single atom interferometry
- Propagation of guided cold atoms
- Interplay of Density and Phase Fluctuations in Ultracold One-dimensional Bose Gases
- Controlled splitting of an atomic wave packet
- Parametric squeezing amplification of Bose-Einstein condensates
- Two-Mode Theory of BEC Interferometry
- Control of atomic currents using a quantum stirring device
- Microtraps and Atom Chips: Toolboxes for Cold Atom Physics
- Matter-wave beam splitter on an atom chip for a portable atom-interferometer
- Multi-barrier resonant tunneling for the one-dimensional nonlinear Schrödinger Equation
- An atom fiber for guiding cold neutral atoms
- Mapping a cloud of ultracold atoms onto a miniature storage ring
- Implementation of a double-path multimode interferometer using a spinor Bose-Einstein condensate
- Decoherence in quantum cavities: Environmental erasure of carpet-type structures
- Controlled quantum stirring of Bose-Einstein condensates
- Quantum transport in the black-hole configuration of an atom condensate outcoupled through an optical lattice
- Interferometry with Atoms
- Quantum interferometry in multi-mode systems
- Macroscopic tunneling, decoherence and noise-induced activation
- The evolution of atomic matter waves inside an atom fiber
- Classical dynamics of a two-species Bose-Einstein condensate in the presence of nonlinear maser processes