Search Results - "Field, T. H."
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1
Magnetic hysteresis in integrated low Tc SQUID gradiometers
Published in Applied physics letters (22-04-1991)Get full text
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2
Gain and continuous-wave laser power enhancement with a secondary discharge to predissociate molecular iodine in an electric oxygen-iodine laser
Published in Applied physics letters (28-01-2008)“…Herein the authors report on the demonstration of a 50% enhancement in gain and 38% enhancement in continuous-wave laser power on the 1315nm transition of…”
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3
Gain and continuous-wave laser oscillation on the 1315 nm atomic iodine transition pumped by an air-helium electric discharge
Published in Applied physics letters (14-07-2008)“…Herein the authors report on the demonstration of gain and a continuous-wave laser on the 1315 nm transition of atomic iodine using the energy transferred to I…”
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Journal Article -
4
Gain and continuous-wave laser power enhancement witha secondary discharge to predissociate molecular iodinein an electric oxygen-iodine laser
Published in Applied physics letters (31-01-2008)“…Herein the authors report on the demonstration of a 50% enhancement in gain and 38% enhancement in continuous-wave laser power on the 1315 nm transition of…”
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Journal Article -
5
Gain and continuous-wave laser oscillation on the 1315nm atomic iodine transition pumped by an air-helium electric discharge
Published in Applied physics letters (14-07-2008)“…Herein the authors report on the demonstration of gain and a continuous-wave laser on the 1315nm transition of atomic iodine using the energy transferred to…”
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Journal Article -
6
The receptive surface and axonal terminals in severely denervated neurons within the lumbosacral cord of the dog
Published in Experimental neurology (01-04-1974)Get more information
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7
Phosphoinositides as ligands of PHD—fingers:implications for chromatin remodeling
Published in Cell research (2002)Get full text
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8
Magnetic hysteresis in integrated low T c SQUID gradiometers
Published in Applied physics letters (22-04-1991)“…We have measured the magnetic hysteresis of thin-film superconducting gradiometers. The fractional hysteresis error h was found to be about 10−9–10−11 in…”
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