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Titlebook: Microwave Cavities and Detectors for Axion Research; Proceedings of the 2 Gianpaolo Carosi,Gray Rybka,Karl van Bibber Conference proceeding

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N. Crescini,D. Alesini,C. Braggio,G. Carugno,D. Di Gioacchino,C. S. Gallo,U. Gambardella,C. Gatti,G.eintegration processes. Although hyperinflation and unemployment challenge the lives of returnees, emotional reasons like keeping ethnic ties, feeling home, and avoiding discriminating context in Europe convinced the returnees to stay in Turkey. The results of the study were discussed within accultu
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0930-8989 d researchers interested in learning the unique requirements for designing and operating microwave cavities and detectors for direct axion searches and to introduce several proposed ex978-3-030-06502-7978-3-319-92726-8Series ISSN 0930-8989 Series E-ISSN 1867-4941
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N. Crisosto,P. Sikivie,N. S. Sullivan,D. B. Tanner
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Detecting Axion Dark Matter with Superconducting Qubits,ortional to the cavity photon number. Through spectroscopy of the qubit, the frequency shift is measured and the cavity occupation number is extracted. At low enough temperatures, this would allow sensitivities exceeding that of the standard quantum limit.
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0930-8989 ods of axion dark matter detection.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 extraord
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Searching Axions through Coupling with Spin: The QUAX Experiment,ed by a suitable quantum counter in an ultra-cryogenic environment. An updated report of the experimental results will be presented, together with a preliminary measurement and a projection of future improvements.
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Introduction to the Numerical Design of RF-Structures with Special Consideration for Axion Detectorand Detectors for Axion Research” (2nd workshop on microwave cavities and detectors for Axion Research at Lawrence Livermore Laboratory, January 10–13th, 2017, .). Differences between the design of RF-structures for Axion detection and RF-structures for traditional applications are pointed out, where appropriate.
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