A Quantum Description of Wave Dark Matter
arXiv:2408.04696 · doi:10.1103/PhysRevD.111.015028
Abstract
We outline a fundamentally quantum description of bosonic dark matter (DM) from which the conventional classical-wave picture emerges in the limit . As appropriate for a quantum system, we start from the density matrix which encodes the full information regarding the possible measurements we could make of DM and their fluctuations. Following fundamental results in quantum optics, we argue that for DM it is most likely that the density matrix takes the explicitly mixed form of a Gaussian over the basis of coherent states. Deviations from this would generate non-Gaussian fluctuations in DM observables, allowing a direct probe of the quantum state of DM. Our quantum optics inspired approach allows us to rigorously define and interpret various quantities that are often only described heuristically, such as the coherence time or length. The formalism further provides a continuous description of DM through the wave-particle transition, which we exploit to study how density fluctuations over various physical scales evolve between the two limits and to reveal the unique behavior of DM near the boundary of the wave and particle descriptions.
30 pages, 3 figures; v2: journal version
References in corpus (37)
- Ultralight scalars as cosmological dark matter
- Implication of neutrino backgrounds on the reach of next generation dark matter direct detection experiments
- A Search for Invisible Axion Dark Matter with the Axion Dark Matter Experiment
- Bose-Einstein Condensation of Dark Matter Axions
- Extended Search for the Invisible Axion with the Axion Dark Matter Experiment
- The Casimir Effect and the Quantum Vacuum
- Wave Dark Matter
- New Observables for Direct Detection of Axion Dark Matter
- Cosmic Axion Spin Precession Experiment (CASPEr)
- Do Dark Matter Axions Form a Condensate with Long-Range Correlation?
- Dark photon limits: a handbook
- First Results from ABRACADABRA-10 cm: A Search for Sub-eV Axion Dark Matter
- Search for "Invisible" Axion Dark Matter in the eV Mass Range
- Fog on the horizon: a new definition of the neutrino floor for direct dark matter searches
- Revealing the Dark Matter Halo with Axion Direct Detection
- The search for low-mass axion dark matter with ABRACADABRA-10cm
- Relaxion Stars and their detection via Atomic Physics
- Detecting dark matter waves with precision measurement tools
- Cosmic axion thermalization
- The Cosmic Axion Background
- Resonant absorption of bosonic dark matter in molecules
- Effect of Gravitational Focusing on Annual Modulation in Dark-Matter Direct-Detection Experiments
- Graviton detection and the quantization of gravity
- Design and Implementation of the ABRACADABRA-10 cm Axion Dark Matter Search
- The Phenomenology of Quadratically Coupled Ultra Light Dark Matter
- Dark Matter Interferometry
- Gravitational Focusing of Wave Dark Matter
- On the Sensitivity of Spin-Precession Axion Experiments
- Gravitational Decoherence of Dark Matter
- Non-equilibrium dynamics of Axion-like particles: the quantum master equation
- Adiabatically compressed wave dark matter halo and intermediate-mass ratio inspirals
- Probing an ultralight QCD axion with electromagnetic quadratic interaction
- Intensity interferometry for ultralight bosonic dark matter detection
- General Relativistic Decoherence with Applications to Dark Matter Detection
- Decoherence from General Relativity
- Dissecting axion and dark photon with a network of vector sensors
- Brownian Axion-like particles
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- Search for Axionlike Dark Matter Using Liquid-State Nuclear Magnetic Resonance
- Detecting gravitational signatures of dark matter with atom gradiometers
- Distinguishing Monochromatic Signals in LISA and Taiji: Ultralight Dark Matter versus Gravitational Waves
- Directional search for light dark matter with quantum sensors
- Probing Ultralight Axion-like Dark Matter: A Pulsar Timing Arrays-Pulsar Polarization Arrays Synergy
- On Pulsar Timing Detection of Ultralight Vector Dark Matter
- Search for a solar-bound axion halo using the Global Network of Optical Magnetometers for Exotic physics searches
- Dark matter pair absorption
- Effects of New Forces on Scalar Dark Matter Solitons
- Probing Quadratically Coupled Ultralight Dark Matter with Pulsar Timing Arrays