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Microwave Cavities and Detectors for Axion Research

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Release : 2018-07-19
Genre : Science
Kind : eBook
Book Rating : 264/5 ( reviews)

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Book Synopsis Microwave Cavities and Detectors for Axion Research by : Gianpaolo Carosi

Download or read book Microwave Cavities and Detectors for Axion Research written by Gianpaolo Carosi. This book was released on 2018-07-19. Available in PDF, EPUB and Kindle. Book excerpt: The nature of dark matter remains one of the preeminent mysteries in physics and cosmology. It appears to require the existence of new particles whose interactions to ordinary matter are extraordinarily feeble. One well-motivated candidate is the axion, an extraordinarily light neutral particle that may possibly be detected by looking for their conversion to detectable microwaves in the presence of a strong magnetic field. This has led to a number of experimental searches that are beginning to probe plausible axion model space and may discover the axion in the near future. These proceedings discuss the challenges of designing and operating tunable resonant cavities and detectors at ultralow temperatures. The topics discussed here have potential application far beyond the field of dark matter detection and may be applied to resonant cavities for accelerators as well as designing superconducting detectors for quantum information and computing applications. This work is intended for graduate students and researchers interested in learning the unique requirements for designing and operating microwave cavities and detectors for direct axion searches and to introduce several proposed experimental concepts that are still in the prototype stage.

Microwave Cavities and Detectors for Axion Research

Download Microwave Cavities and Detectors for Axion Research PDF Online Free

Author :
Release : 2020-07-20
Genre : Science
Kind : eBook
Book Rating : 612/5 ( reviews)

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Book Synopsis Microwave Cavities and Detectors for Axion Research by : Gianpaolo Carosi

Download or read book Microwave Cavities and Detectors for Axion Research written by Gianpaolo Carosi. This book was released on 2020-07-20. Available in PDF, EPUB and Kindle. Book excerpt: The nature of dark matter remains one of the preeminent mysteries in physics and cosmology. It appears to require the existence of new particles whose interactions with ordinary matter are extraordinarily feeble. One well-motivated candidate is the axion, an extraordinarily light neutral particle that may possibly be detected by looking for their conversion to detectable microwaves in the presence of a strong magnetic field. This has led to a number of experimental searches that are beginning to probe plausible axion model space and may reveal the axion in the near future. These proceedings discuss the challenges of designing and operating tunable resonant cavities and detectors at ultralow temperatures. The topics discussed here have potential application far beyond the field of dark matter detection and may be applied to resonant cavities for accelerators as well as designing superconducting detectors for quantum information and computing applications. This work is intended for graduate students and researchers interested in learning the unique requirements for designing and operating microwave cavities and detectors for direct axion searches and to introduce several proposed experimental concepts that are still in the prototype stage.

Microwave Cavities for Axion Dark Matter Detectors

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Author :
Release : 2018-11-29
Genre : Science
Kind : eBook
Book Rating : 053/5 ( reviews)

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Book Synopsis Microwave Cavities for Axion Dark Matter Detectors by : Ian Stern

Download or read book Microwave Cavities for Axion Dark Matter Detectors written by Ian Stern. This book was released on 2018-11-29. Available in PDF, EPUB and Kindle. Book excerpt: Abstract: Nearly all astrophysical and cosmological data point convincingly to a large component of cold dark matter (CDM) in the Universe. The axion particle, first theorized as a solution to the strong charge-conjugate/parity problem of quantum chromodynamics, has been established as a prominent CDM candidate. Cosmic observation and particle physics experiments have bracketed the unknown mass of such CDM axions between approximately microelectronvolts and millielectronvolts. The Axion Dark Matter eXperiment (ADMX) is a direct-detection CDM axion search which has set limits at the KSVZ coupling of the axion to two photons for axion masses between 1.9 and 3.7 microelectronvolts. But most of the viable search-space of axions has yet to be probed. It is now evident that the current cavity design for ADMX does not provide for successful scanning above 4 microelectronvolts ( 1 gigahertz), and new microwave cavity technologies need to be developed to enable searching for CDM axions of greater mass. A broad study into factors that affect high-frequency microwave cavity was conducted in an effort to expand the capabilities of current haloscope detectors. The study evaluated the effects of symmetry breaking on axion search potential and assessed state-of-the-art cavity technologies relevant to haloscope detectors. Periodic arrays of tuning rods or vanes were evaluated for increasing the search range of haloscopes, and a prototype haloscope cavity and an in-situ mode identification technique were developed and tested. The study revealed several significant findings. The cause for frequency gaps in search modes at mode crossing is mode mixing, which occurs due to longitudinal symmetry breaking. Symmetry breaking also results in increased mode crowding, which hinders mode identification and tracking, and further increases mode mixing. Arrays of tuning rods or vanes produce tunable modes, but result in increased sensitivity to symmetry breaking, requiring advanced mode identification techniques and additional studies. Dissertation Discovery Company and University of Florida are dedicated to making scholarly works more discoverable and accessible throughout the world. This dissertation, "Microwave Cavities for Axion Dark Matter Detectors" by Ian Phillip Stern, was obtained from University of Florida and is being sold with permission from the author. A digital copy of this work may also be found in the university's institutional repository, IR@UF. The content of this dissertation has not been altered in any way. We have altered the formatting in order to facilitate the ease of printing and reading of the dissertation.

Cavity Design for High-frequency Axion Dark Matter Detectors

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Author :
Release : 2015
Genre :
Kind : eBook
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Book Synopsis Cavity Design for High-frequency Axion Dark Matter Detectors by :

Download or read book Cavity Design for High-frequency Axion Dark Matter Detectors written by . This book was released on 2015. Available in PDF, EPUB and Kindle. Book excerpt: In this paper, in an effort to extend the usefulness of microwave cavity detectors to higher axion masses, above ~8 [mu]eV (~2 GHz), a numerical trade study of cavities was conducted to investigate the merit of using variable periodic post arrays and regulating vane designs for higher-frequency searches. The results show that both designs could be used to develop resonant cavities for high-mass axion searches. Finally, multiple configurations of both methods obtained the scanning sensitivity equivalent to approximately 4 coherently coupled cavities with a single tuning rod.

Status and Future of Microwave Cavity Axion Searches

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Author :
Release : 1999
Genre :
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Book Synopsis Status and Future of Microwave Cavity Axion Searches by :

Download or read book Status and Future of Microwave Cavity Axion Searches written by . This book was released on 1999. Available in PDF, EPUB and Kindle. Book excerpt: We review the status of an ongoing large-scale search for axions which may constitute the dark matter of our Milky Way halo. The experiment is based on the microwave cavity technique proposed by Sikivie, and marks a ''second-generation'' to the original experiments performed by the Rochester-Brookhaven-Fermilab collaboration, and the University of Florida group. Sensitivity to galactic asions has been achieved, at least for one important model coupling. A remarkable breakthrough in making near-quantum Limited dc SQUID amplifiers in the several hundred megahertz range has provided the enabling technology for a major upgrade of this effort. By improving the noise temperature by more than an order of magnitude, a much more sensitive search may be carried out, greatly improving the prospects for discovering the asion.

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