Charles A. Hagedorn

Affiliations: 
University of Washington, Seattle, Seattle, WA 
Area:
Precision measurement, experimental tests of gravity
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"Charles Hagedorn"
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Publications

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Ross M, Hagedorn C, Shaw E, et al. (2020) Limits on the stochastic gravitational wave background and prospects for single-source detection with GRACE Follow-On Physical Review D. 101
Terrano WA, Adelberger EG, Hagedorn CA, et al. (2019) Constraints on Axionlike Dark Matter with Masses Down to 10^{-23}  eV/c^{2}. Physical Review Letters. 122: 231301
Ross MP, Venkateswara K, Hagedorn CA, et al. (2017) Low‐Frequency Tilt Seismology with a Precision Ground‐Rotation Sensor Seismological Research Letters. 89: 67-76
Venkateswara K, Hagedorn CA, Gundlach JH, et al. (2017) Subtracting Tilt from a Horizontal Seismometer Using a Ground‐Rotation Sensor Bulletin of the Seismological Society of America. 107: 709-717
Venkateswara K, Hagedorn CA, Turner MD, et al. (2014) A high-precision mechanical absolute-rotation sensor. The Review of Scientific Instruments. 85: 015005
Arp TB, Hagedorn CA, Schlamminger S, et al. (2013) A reference-beam autocollimator with nanoradian sensitivity from mHz to kHz and dynamic range of 10(7). The Review of Scientific Instruments. 84: 095007
Turner MD, Hagedorn CA, Schlamminger S, et al. (2011) Picoradian deflection measurement with an interferometric quasi-autocollimator using weak value amplification. Optics Letters. 36: 1479-81
Turner MD, Hagedorn CA, Schlamminger S, et al. (2011) Picoradian deflection measurement with an interferometric quasi-autocollimator using weak value amplification Optics Letters. 36: 1479-1481
Turner MD, Hagedorn CA, Schlamminger S, et al. (2011) Development of an “Interferometric Quasi-Autocollimator” Frontiers in Optics
Dolesi R, Hueller M, Nicolodi D, et al. (2011) Brownian force noise from molecular collisions and the sensitivity of advanced gravitational wave observatories Physical Review D - Particles, Fields, Gravitation and Cosmology. 84
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