Blas Cabrera
Affiliations: | Physics | Stanford University, Palo Alto, CA |
Area:
Experimental & Observational Astrophysics and Cosmology, Experimental Particle PhysicsWebsite:
https://physics.stanford.edu/people/faculty/blas-cabreraGoogle:
"Blas Cabrera"Bio:
https://history.aip.org/phn/11501004.html
https://www.aps.org/programs/honors/prizes/prizerecipient.cfm?last_nm=Cabrera&first_nm=Blas&year=2013
https://inspirehep.net/record/1014795?ln=en
https://books.google.coml/books?id=TxNHAAAAIAAJ
Mean distance: 14.5 | S | N | B | C | P |
Parents
Sign in to add mentorWilliam M. Fairbank | grad student | 1975 | Stanford | |
(The use of superconducting shields for generating ultra-low magnetic field regions) | ||||
William Oliver Hamilton | grad student | 1975 | Stanford | |
(co-advisor) |
Children
Sign in to add traineeAdrian Lee | grad student | Stanford | |
Aaron J Miller | grad student | ||
Sae Woo Nam | grad student | NIST | |
Barbara J. Neuhauser | grad student | Stanford | |
Betty A. Young | grad student | 1984-1990 | Stanford |
Kent D. Irwin | grad student | 1995 | Stanford |
Enectali Figueroa-Feliciano | grad student | 2001 | Stanford |
Tarek Saab | grad student | 2002 | Stanford |
Roland M. Clarke | grad student | 2004 | Stanford |
Clarence L. Chang | grad student | 2005 | Stanford |
Steven W. Leman | grad student | 2006 | Stanford |
Thomas J. Bay | grad student | 2007 | Stanford |
Jennifer A. Burney | grad student | 2007 | Stanford |
Reuben W. Ogburn | grad student | 2008 | Stanford |
Noah A Kurinsky | grad student | 2014-2018 | Stanford University and SLAC National Acc. Lab |
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Publications
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Aralis T, Aramaki T, Arnquist IJ, et al. (2020) Constraints on dark photons and axionlike particles from the SuperCDMS Soudan experiment Physical Review D. 101 |
Ponce F, Stanford C, Yellin S, et al. (2020) Measuring the impact ionization and charge trapping probabilities in SuperCDMS HVeV phonon sensing detectors Physical Review D. 101 |
Stanford C, Moffatt RA, Kurinsky NA, et al. (2020) High-field spatial imaging of charge transport in silicon at low temperature Aip Advances. 10: 025316 |
Ponce F, Page W, Brink PL, et al. (2020) Modeling of Impact Ionization and Charge Trapping in SuperCDMS HVeV Detectors Journal of Low Temperature Physics. 199: 598-605 |
Agnese R, Aralis T, Aramaki T, et al. (2019) Erratum: First Dark Matter Constraints from a SuperCDMS Single-Charge Sensitive Detector [Phys. Rev. Lett. 121, 051301 (2018)]. Physical Review Letters. 122: 069901 |
Kurinsky NA, Yu TC, Hochberg Y, et al. (2019) Diamond detectors for direct detection of sub-GeV dark matter Physical Review D. 99: 123005 |
Agnese R, Aralis T, Aramaki T, et al. (2019) Search for low-mass dark matter with CDMSlite using a profile likelihood fit Physical Review D. 99: 62001 |
Moffatt RA, Kurinsky NA, Stanford C, et al. (2019) Spatial imaging of charge transport in silicon at low temperature Applied Physics Letters. 114: 032104 |
Agnese R, Aralis T, Aramaki T, et al. (2019) Production rate measurement of Tritium and other cosmogenic isotopes in Germanium with CDMSlite Astroparticle Physics. 104: 1-12 |
Agnese R, Aralis T, Aramaki T, et al. (2018) First Dark Matter Constraints from a SuperCDMS Single-Charge Sensitive Detector. Physical Review Letters. 121: 051301 |