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in embedded, intelligent systems. Garner is currently managing the Energy
Systems group in the Hardware Systems Laboratory, and has a focus on CleanTech, of which PARC is a major sponsor. Garner's current work is focussed on advanced cooling technologies for next-generation air conditioning and refrigeration; atmospheric CO
55:, and detailed the first experimental verification "that a slow light pulse can be stopped and stored in one Bose–Einstein condensate and subsequently revived from a totally different condensate, 160 micrometer away; information is transferred through conversion of the optical pulse into a travelling matter wave."
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and other technologies designed to innovate PARC products to be "environmentally friendly". PARC currently conducts research into "clean technology", user interface design, sensemaking, ubiquitous computing and context-aware systems, large-area electronics, and model-based control and optimization
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capture for renewable, infrastructure-compatible liquid fuels; and enhanced geothermal systems. He has presented many papers at conferences and will be discussing PARC's SENSOR: (Smart
Embedded Network of Sensors with Optical Readout) at the
39:. His thesis was titled "Force-Gradient Detection of Nuclear Magnetic Resonance", and Prof. John A. Marohn was his Doctoral Advisor. He then spent 3 years as a Postdoctoral Fellow at
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323:"Creation of Long-Term Coherent Optical Memory via Controlled Nonlinear Interactions in Bose-Einstein Condensates"
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Creation of long-term coherent optical memory via controlled nonlinear interactions in Bose-Einstein condensates
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390:"An all-digital cantilever controller for MRFM and scanned probe microscopy using a combined DSP/FPGA design"
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An all-digital cantilever controller for MRFM and scanned probe microscopy using a combined DSP/FPGA design
128: : D. de Roover, L. M. Porter II, A. Emami-Naeni, J. A. Marohn, S. Kuehn, S. Garner, and D. D. Smith
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Inkjet-patterned, organic complementary circuits integrated with polymer mechanical sensors
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Inkjet-printed, organic complementary circuits integrated with polymer mechanical sensors
43:, School of Engineering and Applied Sciences researching ultra-slow and stopped light in
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San
Francisco Research Division in 2009. This allowed him to undertake further work in
31:(PARC), in San Francisco, CA. Garner received his BA, Mathematics and BS, Physics from
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Flexible printed sensor tape for diagnostics of mild traumatic brain injury
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Printed electronics - the impact on electronic displays and sensor devices
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Flexible and printed electronics for sensors, displays and photovoltaics
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is a physicist currently working on a diverse suite of projects for
220:"Coherent control of optical information with matter wave dynamics"
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Ginsberg, Naomi S.; Garner, Sean R.; Hau, Lene
Vestergaard (2007).
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Flexible printed sensor tape based on solution processed materials
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Coherent control of optical information with matter wave dynamics
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Zhang, Rui; Garner, Sean R.; Hau, Lene
Vestergaard (2009).
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After completing his post-doctoral work, Garner moved to
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Acoustic power recovery system for thermoacoustic cooling
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in 1999, and completed his PhD in physics in 2005 at
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120:Force-gradient detected nuclear magnetic resonance
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310:ARPA-E empowers America’s energy researchers
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272:"Sean Garner - PARC, a Xerox company"
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33:University of California, Santa Cruz
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430:American sustainability advocates
349:10.1103/PhysRevLett.103.233602
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435:Scientists at PARC (company)
20:Sean Garner at PARC in 2020
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89:Energy Innovation Summit.
420:Cornell University alumni
297:"Home The Cleantech Open"
285:PARC (company)#PARC today
45:Bose-Einstein Condensates
29:Palo Alto Research Center
327:Physical Review Letters
77:sustainable engineering
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103:Lene Vestergaard Hau
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410:American physicists
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37:Cornell University
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233:(7128): 623–626.
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47:with Prof.
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