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Related papers: On Searches for Gravitational Dark Matter with Qua…

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A dark photon, one of the candidates of light dark matter, will be searched around 0.1 meV range by using a gyrotron. The use of a Transition Edge Sensor is the key of this experiment and the expected result is promising. This search will…

High Energy Physics - Experiment · Physics 2020-08-24 A. Miyazaki , P. Spagnolo

The presence of dark matter (DM) stands as one of the most compelling indications of new physics in particle physics. Typically, the detection of wave-like DM involves quantum sensors, such as qubits or cavities. The phase of the sensors is…

High Energy Physics - Phenomenology · Physics 2026-03-24 Hajime Fukuda , Yuichiro Matsuzaki , Thanaporn Sichanugrist

Quantum sensing is a rapidly growing approach to probe fundamental physics and explore new phase space for possible new physics with precision and highly sensitive measurements in our quest to understand the deep structure of matter and its…

Quantum Physics · Physics 2024-01-26 Steven D. Bass , Michael Doser

We report on recent progress in the search for dark matter particles with masses from 1 MeV to 1 GeV. Several dark matter candidates in this mass range are expected to generate measurable electronic-recoil signals in direct-detection…

Cosmology and Nongalactic Astrophysics · Physics 2023-01-02 Alvaro E. Chavarria

We are building an experiment to search for dark matter in the form of dark photons in the nano- to milli-eV mass range. This experiment is the electromagnetic dual of magnetic detector dark radio experiments. It is also a frequency-time…

There is a strong possibility that the particles making up the dark matter in the Universe have a mass below 1 eV and in many important situations exhibit a wave-like behavior. Amongst the candidates the axion stands out as particularly…

High Energy Physics - Phenomenology · Physics 2022-09-20 Joerg Jaeckel , Gray Rybka , Lindley Winslow

In dark matter axion searches, quantum uncertainty manifests as a fundamental noise source, limiting the measurement of the quadrature observables used for detection. We use vacuum squeezing to circumvent the quantum limit in a search for a…

Ultralight dark matter candidates, such as axions and dark photons, are leading dark matter candidates. They may couple feebly to photons, sourcing oscillating electromagnetic signals in the Earth's conducting cavity formed between the…

High Energy Physics - Phenomenology · Physics 2025-12-08 Ariel Arza , Yuanlin Gong , Jun Guo , Xiaofei Huang , Jing Shu , Hongliang Tian , Wenyu Wang , Kai Wei , Lei Wu , Mingming Xia , Jin Min Yang , Qiang Yuan , Yang Zhang , Yi Zhang , Bin Zhu

The mass of the dark matter particle is unknown, and may be as low as ~$10^{-22}$ eV. The lighter part of this range, below ~eV, is relatively unexplored both theoretically and experimentally but contains an array of natural dark matter…

High Energy Physics - Phenomenology · Physics 2016-04-27 Peter W. Graham , David E. Kaplan , Jeremy Mardon , Surjeet Rajendran , William A. Terrano

In this paper we consider very weakly interacting and ultra light scalar and pseudoscalar dark matter candidates. We show that quantum gravity has important implications for such models and that the masses of the singlet scalar and…

High Energy Physics - Phenomenology · Physics 2020-08-17 Xavier Calmet , Folkert Kuipers

We describe a variety of searches for new physics beyond the Standard Model of particle physics which may be enabled in the coming years by the use of optically levitated masses in high vacuum. Such systems are expected to reach force and…

Quantum Physics · Physics 2021-01-18 David C. Moore , Andrew A. Geraci

The last decade has seen unprecedented effort in dark matter model building at all mass scales coupled with the design of numerous new detection strategies. Transformative advances in quantum technologies have led to a plethora of new…

High Energy Physics - Experiment · Physics 2022-03-29 D. Antypas , A. Banerjee , C. Bartram , M. Baryakhtar , J. Betz , J. J. Bollinger , C. Boutan , D. Bowring , D. Budker , D. Carney , G. Carosi , S. Chaudhuri , S. Cheong , A. Chou , M. D. Chowdhury , R. T. Co , J. R. Crespo López-Urrutia , M. Demarteau , N. DePorzio , A. V. Derbin , T. Deshpande , M. D. Chowdhury , L. Di Luzio , A. Diaz-Morcillo , J. M. Doyle , A. Drlica-Wagner , A. Droster , N. Du , B. Döbrich , J. Eby , R. Essig , G. S. Farren , N. L. Figueroa , J. T. Fry , S. Gardner , A. A. Geraci , A. Ghalsasi , S. Ghosh , M. Giannotti , B. Gimeno , S. M. Griffin , D. Grin , D. Grin , H. Grote , J. H. Gundlach , M. Guzzetti , D. Hanneke , R. Harnik , R. Henning , V. Irsic , H. Jackson , D. F. Jackson Kimball , J. Jaeckel , M. Kagan , D. Kedar , R. Khatiwada , S. Knirck , S. Kolkowitz , T. Kovachy , S. E. Kuenstner , Z. Lasner , A. F. Leder , R. Lehnert , D. R. Leibrandt , E. Lentz , S. M. Lewis , Z. Liu , J. Manley , R. H. Maruyama , A. J. Millar , V. N. Muratova , N. Musoke , S. Nagaitsev , O. Noroozian , C. A. J. O'Hare , J. L. Ouellet , K. M. W. Pappas , E. Peik , G. Perez , A. Phipps , N. M. Rapidis , J. M. Robinson , V. H. Robles , K. K. Rogers , J. Rudolph , G. Rybka , M. Safdari , M. Safdari , M. S. Safronova , C. P. Salemi , P. O. Schmidt , T. Schumm , A. Schwartzman , J. Shu , M. Simanovskaia , J. Singh , S. Singh , M. S. Smith , W. M. Snow , Y. V. Stadnik , C. Sun , A. O. Sushkov , T. M. P. Tait , V. Takhistov , D. B. Tanner , D. J. Temples , P. G. Thirolf , J. H. Thomas , M. E. Tobar , O. Tretiak , Y. -D. Tsai , J. A. Tyson , M. Vandegar , S. Vermeulen , L. Visinelli , E. Vitagliano , Z. Wang , D. J. Wilson , L. Winslow , S. Withington , M. Wooten , J. Yang , J. Ye , B. A. Young , F. Yu , M. H. Zaheer , T. Zelevinsky , Y. Zhao , K. Zhou

Quantum algorithms such as dynamical decoupling can be used to improve the sensitivity of a quantum sensor to a signal while suppressing sensitivity to noise. Atomic clocks are among the most sensitive quantum sensors, with recent…

Quantum Physics · Physics 2023-02-28 M. H. Zaheer , N. J. Matjelo , D. B. Hume , M. S. Safronova , D. R. Leibrandt

Dark Matter (DM) comprising particles in the mass range of a few MeV to GeV is waiting to be explored, given the many theoretical models accommodating cosmological abundance. We hereby propose an experiment with the LHC proton beam of 7 TeV…

High Energy Physics - Experiment · Physics 2016-09-04 Ashok Kumar , Archana Sharma

Among several dark matter candidates, bosonic ultralight (sub meV) dark matter is well motivated because it could couple to the Standard Model (SM) and induce new forces. Previous MICROSCOPE and Eot Wash torsion experiments have achieved…

Cosmology and Nongalactic Astrophysics · Physics 2023-08-09 Rui Li , Shaochun Lin , Liang Zhang , Changkui Duan , Pu Huang , Jiangfeng Du

It has been proposed that an additional U(1) sector of hidden photons could account for the Dark Matter observed in the Universe. When passing through an interface of materials with different dielectric properties, hidden photons can give…

The report describes the research program on the development of ultra-low-energy germanium detectors, with emphasis on WIMP dark matter searches. A threshold of 100 eV is achieved with a 20 g detector array, providing a unique probe to the…

High Energy Physics - Experiment · Physics 2008-11-26 H. T. Wong

We propose a search for low mass dark matter particles through momentum recoils caused by their scattering from trapped, nm-scale objects. Our projections show that even with a modest array of fg-mass sensors, parameter-space beyond the…

Instrumentation and Detectors · Physics 2022-03-10 Gadi Afek , Daniel Carney , David C. Moore

We propose a novel mechanism for photon-dark photon mass state oscillations mediated by gravitational separation during propagation through the interstellar medium. This phenomenon establishes a new avenue for the detection of dark matter.…

High Energy Astrophysical Phenomena · Physics 2025-04-10 Zhang Bo , Luo Cui-Bai