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Annual Review of Biomedical Engineering|March 3, 2007
SQUID-detected magnetic resonance imaging in microtesla fieldsJohn Clarke, Michael Hatridge, Michael MösslePhysical Review Letters|December 19, 2025
Engineering a Multilevel Bath for Transmons with Three-Wave Mixing and Parametric DrivesXi Cao, Maria Mucci, Gangqiang Liu, et al.Physical Review Letters|September 3, 2013
Three-wave mixing with three incoming waves: signal-idler coherent attenuation and gain enhancement in a parametric amplifierFlavius Schackert, Ananda Roy, Michael Hatridge, et al.Nature Communications|September 24, 2021
Proposal for a continuous wave laser with linewidth well below the standard quantum limitChenxu Liu, Maria Mucci, Xi Cao, et al.Physical Review Letters|May 13, 2014
Josephson directional amplifier for quantum measurement of superconducting circuitsBaleegh Abdo, Katrina Sliwa, S Shankar, et al.Journal of Applied Physics|April 23, 2014
Conductive shield for ultra-low-field magnetic resonance imaging: Theory and measurements of eddy currentsKoos C J Zevenhoven, Sarah Busch, Michael Hatridge, et al.Journal of Magnetic Resonance (San Diego, Calif. : 1997)|March 6, 2007
Calculated signal-to-noise ratio of MRI detected with SQUIDs and Faraday detectors in fields from 10 microT to 1.5 TWhittier Myers, Daniel Slichter, Michael Hatridge, et al.Physical Review Letters|May 18, 2013
Full coherent frequency conversion between two propagating microwave modesBaleegh Abdo, Katrina Sliwa, Flavius Schackert, et al.Journal of Magnetic Resonance (San Diego, Calif. : 1997)|November 29, 2005
SQUID-detected microtesla MRI in the presence of metalMichael Mössle, Song-I Han, Whittier R Myers, et al.Magnetic Resonance in Medicine|February 2, 2012
Measurements of T(1) -relaxation in ex vivo prostate tissue at 132 μTSarah Busch, Michael Hatridge, Michael Mößle, et al.Pageof 2