Detecting inertial effects with airborne matter-wave interferometry
arXiv:1109.5905 · doi:10.1038/ncomms1479
Abstract
Inertial sensors relying on atom interferometry offer a breakthrough advance in a variety of applications, such as inertial navigation, gravimetry or ground- and space-based tests of fundamental physics. These instruments require a quiet environment to reach their performance and using them outside the laboratory remains a challenge. Here we report the first operation of an airborne matter-wave accelerometer set up aboard a 0g plane and operating during the standard gravity (1g) and microgravity (0g) phases of the flight. At 1g, the sensor can detect inertial effects more than 300 times weaker than the typical acceleration fluctuations of the aircraft. We describe the improvement of the interferometer sensitivity in 0g, which reaches 2 x 10-4 ms-2 / \surdHz with our current setup. We finally discuss the extension of our method to airborne and spaceborne tests of the Universality of free fall with matter waves.
7 pages, 6 figures. The final version of this article is available in OPEN access (free) from the editor website at http://www.nature.com/ncomms/journal/v2/n9/full/ncomms1479.html
References in corpus (7)
- The Confrontation between General Relativity and Experiment
- Atom Interferometers
- Test of the Equivalence Principle Using a Rotating Torsion Balance
- Testing General Relativity with Atom Interferometry
- An Atomic Gravitational Wave Interferometric Sensor (AGIS)
- Comparison between two mobile absolute gravimeters: optical versus atomic interferometers
- Operating an atom interferometer beyond its linear range
Cited by in corpus (162)
- Search for New Physics with Atoms and Molecules
- Interferometry with Bose-Einstein Condensates in Microgravity
- Gravity measurements below with a transportable absolute quantum gravimeter
- Exploring gravity with the MIGA large scale atom interferometer
- Continuous Cold-atom Inertial Sensor with Rotation Stability
- Integrated Mach-Zehnder interferometer for Bose-Einstein condensates
- Scalable Spin Squeezing for Quantum-Enhanced Magnetometry with Bose-Einstein Condensates
- Gravity surveys using a mobile atom interferometer
- Sensitivity limits of a Raman atom interferometer as a gravity gradiometer
- High-accuracy inertial measurements with cold-atom sensors
- Dual Matter-Wave Inertial Sensors in Weightlessness
- Gravitational Decoherence
- Quantum Tests of the Einstein Equivalence Principle with the STE-QUEST Space Mission
- STE-QUEST - Test of the Universality of Free Fall Using Cold Atom Interferometry
- Simultaneous Dual-Species Matter-Wave Accelerometer
- Testing Gravity with Cold-Atom Interferometers
- Influence of the Coriolis force in atom interferometry
- Compact cold atom gravimeter for field applications
- Experiment to detect dark energy forces using atom interferometry
- Atomtronic circuits: from many-body physics to quantum technologies
- Navigation-compatible hybrid quantum accelerometer using a Kalman filter
- Testing gravity with cold atom interferometry: Results and prospects
- Measurement of the Gravity-Field Curvature by Atom Interferometry
- Hybridizing matter-wave and classical accelerometers
- A quantum sensor: simultaneous precision gravimetry and magnetic gradiometry with a Bose-Einstein condensate
- Enhanced atom interferometer readout through the application of phase shear
- Testing the universality of free fall with rubidium and ytterbium in a very large baseline atom interferometer
- A spaceborne gravity gradiometer concept based on cold atom interferometers for measuring Earth's gravity field
- Multiaxis atom interferometry with a single diode laser and a pyramidal magneto-optical trap
- Chameleon Dark Energy and Atom Interferometry
- The Feasibility of a Fully Miniaturized Magneto-Optical Trap for Portable Ultracold Quantum Technology
- Atom lasers: production, properties and prospects for precision inertial measurement
- A Compact Cold-Atom Interferometer with a High Data-Rate Grating Magneto-Optical Trap and a Photonic-Integrated-Circuit-Compatible Laser System
- A high-flux BEC source for mobile atom interferometers
- Double Bragg diffraction: A tool for atom optics
- Quantum Test of the Equivalence Principle and Space-Time aboard the International Space Station
- High data-rate atom interferometer for measuring acceleration
- High Precision, Quantum-Enhanced Gravimetry with a Bose-Einstein Condensate
- Gravitational redshift in quantum-clock interferometry
- Three-path atom interferometry with large momentum separation
- Compact chip-scale guided cold atom gyrometers for inertial navigation: Enabling technologies and design study
- Phase shift in an atom interferometer induced by the additional laser lines of a Raman laser generated by modulation
- A compact and robust diode laser system for atom interferometry on a sounding rocket
- Dual-wavelength laser source for onboard atom interferometry
- Soliton-based matter wave interferometer
- Overcoming loss of contrast in atom interferometry due to gravity gradients
- A laser setup for rubidium cooling dedicated to space applications
- Antimatter interferometry for gravity measurements
- High-resolution atom interferometers with suppressed diffraction phases
- Improving cold-atom sensors with quantum entanglement: Prospects and challenges
- Representation-free description of light-pulse atom interferometry including non-inertial effects
- Development of compact cold-atom sensors for inertial navigation
- An atomically thin matter-wave beamsplitter
- Interactions of solitons with a Gaussian barrier: Splitting and recombination in quasi-1D and 3D
- Correlative methods for dual-species quantum tests of the weak equivalence principle
- Design of a dual species atom interferometer for space
- Multi-axis atom interferometer gyroscope with a single source of atoms
- Matter-wave interference of a native polypeptide
- Fast manipulation of Bose-Einstein condensates with an atom chip
- Enhancing the sensitivity of atom-interferometric inertial sensors using robust control
- Atom Interferometry with Floquet Atom Optics
- Splitting the Raman beamsplitter
- Characterization of a Simultaneous Dual-Species Atom Interferometer for a Quantum Test of the Weak Equivalence Principle
- Two-dimensional grating magneto-optical trap
- Inertial quantum sensors using light and matter
- Metrology with Atom Interferometry: Inertial Sensors from Laboratory to Field Applications
- Regimes of atomic diffraction: Raman versus Bragg diffraction in retroreflective geometries
- Atom Interferometry in a Warm Vapor
- Atom Interferometry with Top-Hat Laser Beams
- Observation of Free-Space Single-Atom Matterwave Interference
- Optimal control of Bose-Einstein condensates in three dimensions
- Robust laser frequency stabilization by serrodyne modulation
- Stability enhancement by joint phase measurements in a single cold atomic fountain
- Quantum test of the Universality of Free Fall using rubidium and potassium
- Multi-loop atomic Sagnac interferometry
- A Bose-condensed, simultaneous dual species Mach-Zehnder atom interferometer
- A Cold Atomic Beam Interferometer
- Fluorescence detection at the atom shot noise limit for atom interferometry
- Exploring the Foundations of the Universe with Space Tests of the Equivalence Principle
- Miniaturized lab system for future cold atom experiments in microgravity
- Atom Interferometer Gyroscope with Spin-Dependent Phase Shifts Induced by Light near a Tune-Out Wavelength
- Optomechanical resonator-enhanced atom interferometry
- Improving the phase response of an atom interferometer by means of temporal pulse shaping
- Testing the Universality of Free Fall using correlated K -- Rb interferometers
- A faster scaling in acceleration-sensitive atom interferometers
- Fiber laser system for cesium and rubidium atom interferometry
- Resolution of the Co-Location Problem in Satellite Quantum Tests of the Universality of Free Fall
- Zero-velocity atom interferometry using a retroreflected frequency chirped laser
- Atom interferometry with thousand-fold increase in dynamic range
- Interacting quantum mixtures for precision atom interferometry
- Effective velocity distribution in an atom gravimeter: effect of the convolution with the response of the detection
- Large-momentum-transfer atom interferometers with rad-accuracy using Bragg diffraction
- Demonstration of a free space rubidium atomic clock with noise below the quantum projection limit
- Proof-of-principle demonstration of vertical gravity gradient measurement using a single proof mass double-loop atom interferometer
- New concepts of inertial measurements with multi-species atom interferometry
- Perspective on new implementations of atomtronic circuits
- Prospects for Precise Measurements with Echo Atom Interferometry
- A high-flux, adjustable, compact cold-atom source
- Future Gravitational Wave Detectors Based on Atom Interferometry
- Demonstration of improved sensitivity of echo interferometers to gravitational acceleration
- Atomic Raman scattering: Third-order diffraction in a double geometry
- Enhanced nonlinear quantum metrology with weakly coupled solitons and particle losses
- Bloch-bands Picture for Light Pulse Atom Diffraction and Interferometry
- Constraining symmetron dark energy using atom interferometry
- The Emergency of Pico-Kelvin Physics
- Position fixing with cold atom gravity gradiometers
- Multi-axis inertial sensing with 2D matter-wave arrays
- Multiport Atom Interferometry for Inertial Sensing
- Recoil-sensitive lithium interferometer without a subrecoil sample
- Quantum hybrid optomechanical inertial sensing
- A compact micro-wave synthesizer for transportable cold-atom interferometers
- A phase-locked laser system based on modulation technique for atom interferometry
- Reducing number fluctuations of ultracold atomic gases via dispersive interrogation
- Guided matter wave inertial sensing in a miniature physics package
- Single-atom interferometer based on two-dimensional spatial adiabatic passage
- Observations of coherence de Broglie waves
- Robust double Bragg diffraction via detuning control
- Generation of a single ion large oscillator
- Closed-loop measurements in an atom interferometer gyroscope with velocity-dependent phase-dispersion compensation
- Composite pulses in Hyper-Ramsey spectroscopy for the next generation of atomic clocks
- Interferometric measurement of micro-g acceleration with levitated atoms
- Enhancing the sensitivity of rotation in a multi-atom Sagnac interferometer
- Space-Time Curvature Signatures in Bose-Einstein Condensates
- Vibrational dephasing in matter-wave interferometers
- Atom interferometry using - Raman transitions between and
- Atom-interferometric measurement of Stark level splittings
- An N-atom Collective State Atomic Interferometer with Ultra-High Compton Frequency and Ultra-Short de Broglie Wavelength, with root-N Reduction in Fringe Width
- Effects of Non-idealities and Quantization of the Center of Mass Motion on Symmetric and Asymmetric Collective States in a Collective State Atomic Interferometer
- Aberrations in (3+1)D Bragg diffraction using pulsed Gaussian laser beams
- Measuring the gravitational acceleration with precision matter-wave velocimetry
- SQUID-based interferometric accelerometer
- Cold-atom Inertial Sensor without Deadtime
- A high-flux cold-atom source utilising a grating atom chip
- Compact single-seed, module-based laser system on a transportable high-precision atomic gravimeter
- Integration of a high-fidelity model of quantum sensors with a map-matching filter for quantum-enhanced navigation
- Influence of optical aberrations on the accuracy of an atomic gravimeter
- Emulating an Atomic Gyroscope with Multiple Accelerometers
- Dual Open Atom Interferometry for Compact and Mobile Quantum Sensing
- Quantum Technology for Military Applications
- Sensitivity and Bandwidth of a Point-Source-Interferometry-based Inertial Measurement Unit Employing Large Momentum Transfer and Launched Atoms
- Modeling atom interferometry experiments with Bose-Einstein condensates in power-law potentials
- Coherently driven photonic de Broglie Sagnac interferometer
- Phases and relativity in atomic gravimetry
- Focusing Atom Laser Beams
- High-contrast double Bragg interferometry via detuning control
- Near-field diffraction of protons by a nanostructured metallic grating under external electric field: Asymmetry and sidebands in Talbot self-imaging
- Efficient single-pass third-harmonic generation at 520 nm for pumping doubly-resonant OPO
- Underground operation at best sensitivity of the mobile LNE-SYRTE Cold Atom Gravimeter
- Testing weakest force with coldest spot
- Single-Pass Laser Frequency Conversion to 780.2 nm and 852.3 nm Based on PPMgO:LN Bulk Crystals and Diode-Laser-Seeded Fiber Amplifiers
- An atomic Fabry-Perot interferometer-based acceleration sensor for microgravity environments
- Hybrid electrostatic-atomic accelerometer for future space gravity missions
- Interferometry of Atomic Matter Waves in the Cold Atom Lab onboard the International Space Station
- Bose-Einstein condensates in microgravity and fundamental tests of gravity
- A fibered laser system for the MIGA large scale atom interferometer
- Diffraction of a CW atom laser in the Raman-Nath regime
- Offset Simultaneous Conjugate Atom Interferometers
- A Wigner Function Approach to Coherence in a Talbot-Lau Interferometer
- High-Precision Phase Control of an Optical Lattice with up to 50 dB Noise Suppression
- Cavity optomechanics with ultra-cold Bose gases for quasiparticle state manipulation and prospects for sensing applications
- Quantum Physics in Space
- Diffraction phase-free Bragg atom interferometry