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Design Overview of DM Radio Pathfinder Experiment

We introduce DM Radio, a dual search for axion and hidden photon dark matter using a tunable superconducting lumped-element resonator. We discuss the prototype DM Radio Pathfinder experiment, which will probe hidden photons in the 500 peV (100 kHz)-50 neV (10 MHz) mass range. We detail the design of...

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Published in:IEEE transactions on applied superconductivity 2017-06, Vol.27 (4), p.1-4
Main Authors: Silva-Feaver, Maximiliano, Chaudhuri, Saptarshi, Hsaio-Mei Cho, Dawson, Carl, Graham, Peter, Irwin, Kent, Kuenstner, Stephen, Dale Li, Mardon, Jeremy, Moseley, Harvey, Mule, Richard, Phipps, Arran, Rajendran, Surjeet, Steffen, Zach, Young, Betty
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cited_by cdi_FETCH-LOGICAL-c180t-cb09ebde50b1a3d1991883f8909c4f42b0f26cd9746b0f0f27d9dc51336b7b363
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container_end_page 4
container_issue 4
container_start_page 1
container_title IEEE transactions on applied superconductivity
container_volume 27
creator Silva-Feaver, Maximiliano
Chaudhuri, Saptarshi
Hsaio-Mei Cho
Dawson, Carl
Graham, Peter
Irwin, Kent
Kuenstner, Stephen
Dale Li
Mardon, Jeremy
Moseley, Harvey
Mule, Richard
Phipps, Arran
Rajendran, Surjeet
Steffen, Zach
Young, Betty
description We introduce DM Radio, a dual search for axion and hidden photon dark matter using a tunable superconducting lumped-element resonator. We discuss the prototype DM Radio Pathfinder experiment, which will probe hidden photons in the 500 peV (100 kHz)-50 neV (10 MHz) mass range. We detail the design of the various components: the LC resonant detector, the resonant frequency tuning procedure, the differential SQUID readout circuit, the shielding, and the cryogenic mounting structure. We present the current status of the pathfinder experiment and illustrate its potential science reach in the context of the larger experimental program.
doi_str_mv 10.1109/TASC.2016.2631425
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subjects axion
Capacitors
Detectors
Hidden photon
Niobium
Photonics
SQUID series array
SQUIDs
Tuning
title Design Overview of DM Radio Pathfinder Experiment
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