_version_ 1866909599249989632
author Goodman, C.
Guzzetti, M.
Hanretty, C.
Rosenberg, L. J.
Rybka, G.
Sinnis, J.
Zhang, D.
Clarke, John
Siddiqi, I.
Chou, A. S.
Hollister, M.
Knirck, S.
Sonnenschein, A.
Caligiure, T. J.
Gleason, J. R.
Hipp, A. T.
Sikivie, P.
Solano, M. E.
Sullivan, N. S.
Tanner, D. B.
Khatiwada, R.
Carosi, G.
Cisneros, C.
Du, N.
Robertson, N.
Woollett, N.
Duffy, L. D.
Boutan, C.
Braine, T.
Lentz, E.
Oblath, N. S.
Taubman, M. S.
Daw, E. J.
Mostyn, C.
Perry, M. G.
Bartram, C.
Dyson, T. A.
Ruppert, S.
Withers, M. O.
Kuo, C. L.
McAllister, B. T.
Buckley, J. H.
Gaikwad, C.
Hoffman, J.
Murch, K.
Goryachev, M.
Hartman, E.
Quiskamp, A.
Tobar, M. E.
author_facet Goodman, C.
Guzzetti, M.
Hanretty, C.
Rosenberg, L. J.
Rybka, G.
Sinnis, J.
Zhang, D.
Clarke, John
Siddiqi, I.
Chou, A. S.
Hollister, M.
Knirck, S.
Sonnenschein, A.
Caligiure, T. J.
Gleason, J. R.
Hipp, A. T.
Sikivie, P.
Solano, M. E.
Sullivan, N. S.
Tanner, D. B.
Khatiwada, R.
Carosi, G.
Cisneros, C.
Du, N.
Robertson, N.
Woollett, N.
Duffy, L. D.
Boutan, C.
Braine, T.
Lentz, E.
Oblath, N. S.
Taubman, M. S.
Daw, E. J.
Mostyn, C.
Perry, M. G.
Bartram, C.
Dyson, T. A.
Ruppert, S.
Withers, M. O.
Kuo, C. L.
McAllister, B. T.
Buckley, J. H.
Gaikwad, C.
Hoffman, J.
Murch, K.
Goryachev, M.
Hartman, E.
Quiskamp, A.
Tobar, M. E.
contents We report the results of a QCD axion dark matter search with discovery ability for Dine Fischler Srednicki Zhitnitsky (DFSZ) axions using an axion haloscope. Sub-Kelvin noise temperatures are reached with an ultra low-noise Josephson parametric amplifier cooled by a dilution refrigerator. This work excludes (with a 90% confidence level) DFSZ axions with masses between 3.27 to 3.34 $μ$eV, assuming a standard halo model with a local energy density of 0.45 GeV/cm$^3$ made up 100% of axions.
format Preprint
id arxiv_https___arxiv_org_abs_2408_15227
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Axion Dark Matter eXperiment around 3.3 μeV with Dine-Fischler-Srednicki-Zhitnitsky Discovery Ability
Goodman, C.
Guzzetti, M.
Hanretty, C.
Rosenberg, L. J.
Rybka, G.
Sinnis, J.
Zhang, D.
Clarke, John
Siddiqi, I.
Chou, A. S.
Hollister, M.
Knirck, S.
Sonnenschein, A.
Caligiure, T. J.
Gleason, J. R.
Hipp, A. T.
Sikivie, P.
Solano, M. E.
Sullivan, N. S.
Tanner, D. B.
Khatiwada, R.
Carosi, G.
Cisneros, C.
Du, N.
Robertson, N.
Woollett, N.
Duffy, L. D.
Boutan, C.
Braine, T.
Lentz, E.
Oblath, N. S.
Taubman, M. S.
Daw, E. J.
Mostyn, C.
Perry, M. G.
Bartram, C.
Dyson, T. A.
Ruppert, S.
Withers, M. O.
Kuo, C. L.
McAllister, B. T.
Buckley, J. H.
Gaikwad, C.
Hoffman, J.
Murch, K.
Goryachev, M.
Hartman, E.
Quiskamp, A.
Tobar, M. E.
High Energy Physics - Experiment
We report the results of a QCD axion dark matter search with discovery ability for Dine Fischler Srednicki Zhitnitsky (DFSZ) axions using an axion haloscope. Sub-Kelvin noise temperatures are reached with an ultra low-noise Josephson parametric amplifier cooled by a dilution refrigerator. This work excludes (with a 90% confidence level) DFSZ axions with masses between 3.27 to 3.34 $μ$eV, assuming a standard halo model with a local energy density of 0.45 GeV/cm$^3$ made up 100% of axions.
title Axion Dark Matter eXperiment around 3.3 μeV with Dine-Fischler-Srednicki-Zhitnitsky Discovery Ability
topic High Energy Physics - Experiment
url https://arxiv.org/abs/2408.15227