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In 1950, Korringa showed that the spin relaxation rate divided by the square of the magnetic resonance field shift (the Knight shift) obtained from an NMR experiment is equal to a constant, Îş, times the temperature T. The magnitude of the
Korringa constant Îş and its possible deviation from a constant
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and
Malcolm Stocks combined it with the KKR theory to obtain the KKR–CPA method, which is presently used for alloy calculations. Korringa’s MST is the basis for numerous theoretical developments, including the locally self-consistent
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Yang Wang; G. M. Stocks; W. A. Shelton; D. M. C. Nicholson; Z. Szotek; W. M. Temmerman (1995). "Order-N Multiple
Scattering Approach to Electronic Structure Calculations".
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G. M. Stocks; W. M. Temmerman; B. L. Gyorffy (1978). "Complete
Solution of the Korringa-Kohn-Rostoker Coherent-Potential-Approximation Equations: Cu-Ni Alloys".
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J. S. Faulkner; Harold L. Davis; H. W. Joy (1967). "Calculation of
Constant-Energy Surfaces for Copper by the Korringa-Kohn-Rostoker Method".
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developed by
Malcolm Stocks and Yang Wang that can be used to obtain the electronic and magnetic states of any ordered or disordered solid.
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J. Korringa (1958). "Dispersion theory for electrons in a random lattice with applications to the electronic structure of alloys".
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245:. Two of Korringa's students, Sam Faulkner and Harold Davis, started a program at the Oak Ridge National Laboratory using the
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Korringa realized that his equations could be used to calculate the electronic states of non-periodic solids for which
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J. Korringa (1950). "Nuclear magnetic relaxation and resonance line shift in metals".
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423:"Florida Atlantic University | Emeritus Professor of Physics, J. Sam Faulkner"
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J. Korringa (1947). "On the calculation of the energy of a Bloch wave in a metal".
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402:"LA Times Obituary | UCI clean energy pioneer Norman Rostoker, 89, dies"
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514:"Oak Ridge National Laboratory | Corporate Fellow, G. Malcolm Stocks"
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value is the signature of the effects of strong correlations in the
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for many years. During the summers, he collaborated with a group at
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does not hold. In 1958 he published an approach, now called the
241:(a nuclear physicist), derived the same equations using the
346:"John Simon Guggenheim Foundation | Jan Korringa"
187:, and who was a large influence on his interest in
143:, to pursue graduate studies. After the closure of
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247:Korringa-Kohn-Rostoker (KKR) band-theory equations
165:Onderzoekingen op het gebied algebraĂŻsche optiek
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480:Journal of Physics and Chemistry of Solids
29:
18:
713:Fellows of the American Physical Society
249:to calculate the properties of solids.
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104:(31 March 1915 – 9 October 2015) was a
673:Delft University of Technology alumni
229:In a 1947 paper, Korringa showed how
218:that he used for a sabbatical at the
198:and accepted a full professorship at
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708:Dutch emigrants to the United States
183:, who had been the first protégé of
169:Essays in the area of science optics
113:theoretical condensed matter physics
16:Dutch-American physicist (1915–2015)
678:Academic staff of Leiden University
212:nuclear magnetic resonance logging
14:
270:Coherent Potential Approximation
216:Guggenheim Foundation fellowship
171:). In 1946, Korringa became an
258:average t-matrix approximation
194:In 1952, Korringa went to the
157:Delft University of Technology
149:Delft University of Technology
133:Delft University of Technology
1:
683:Ohio State University faculty
668:20th-century Dutch physicists
334:Mathematics Genealogy Project
204:Oak Ridge National Laboratory
135:. In 1937, Korringa went to
115:. He also contributed to the
638:10.1016/0031-8914(50)90105-4
500:10.1016/0022-3697(58)90270-1
388:10.1016/0031-8914(47)90013-x
214:. In 1962, he was awarded a
595:10.1103/PhysRevLett.75.2867
729:
560:10.1103/PhysRevLett.41.339
279:multiple scattering theory
231:multiple scattering theory
693:American men centenarians
516:. gms.org. Archived from
202:. He was a consultant at
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404:. nr.org. 8 January 2015
74:Laguna Beach, California
575:Physical Review Letters
540:Physical Review Letters
465:10.1103/PhysRev.161.656
243:Kohn variational method
237:(a Nobel laureate) and
147:, Korringa returned to
44:31 March 1915
688:Theoretical physicists
260:, for calculating the
220:University of Besançon
179:. He was a protégé of
127:Korringa received his
698:People from Heemstede
266:substitutional alloys
200:Ohio State University
151:. In 1942, he gave a
109:theoretical physicist
85:Theoretical physicist
177:University of Leiden
153:Doctor of Philosophy
129:undergraduate degree
123:Education and career
35:Jan Korringa in 1975
630:1950Phy....16..601K
587:1995PhRvL..75.2867W
552:1978PhRvL..41..339S
492:1958JPCS....7..252K
457:1967PhRv..161..656F
380:1947Phy....13..392K
208:Chevron Corporation
173:associate professor
703:Dutch centenarians
159:and published his
111:, specializing in
581:(15): 2867–2870.
262:electronic states
189:quantum mechanics
145:Leiden University
137:Leiden University
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239:Norman Rostoker
210:that developed
181:Hendrik Kramers
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307:"Jan Korringa"
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90:Known for
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350:. Retrieved
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330:Jan Korringa
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314:. Retrieved
311:pubs.aip.org
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287:electron gas
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102:Jan Korringa
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68:(2015-10-09)
23:Jan Korringa
663:2015 deaths
658:1915 births
235:Walter Kohn
141:Netherlands
652:Categories
524:2016-05-28
429:2016-05-28
408:2016-05-26
352:2016-04-03
316:2023-08-11
293:References
264:in random
185:Niels Bohr
117:KKR Method
94:KKR method
82:Occupation
48:1915-03-31
131:from the
55:Heemstede
603:10059425
425:. sf.org
348:. gf.org
626:Bibcode
618:Physica
583:Bibcode
548:Bibcode
488:Bibcode
453:Bibcode
376:Bibcode
368:Physica
332:at the
272:(CPA).
175:at the
46: (
601:
224:France
161:thesis
155:from
76:, U.S
599:PMID
372:XIII
63:Died
41:Born
634:doi
591:doi
556:doi
496:doi
461:doi
449:161
384:doi
222:in
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