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20 April 2024
 
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Results 1 to 20 of 52 for query "J.Blaha". (0.00 sec.)

[    1    2    3    ]   Next
1.
Band widths and gaps from the Tran-Blaha functional : Comparison with many-body perturbation theory
David Waroquiers; Aurélien Lherbier; Anna Miglio; Martin Stankovski; Samuel Poncé; Micael J. T. Oliveira; Matteo Giantomassi; Gian-Marco Rignanese; Xavier Gonze;
27 Feb 2013
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2.
Electronic Structure Calculations with the Tran-Blaha Modified Becke-Johnson Density Functional
David J. Singh;
9 Sep 2010
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3.
Application of screened hybrid functionals to the bulk transition metals Rh, Pd, and Pt
Fabien Tran; David Koller; Peter Blaha;
27 Sep 2012
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4.
Structure and optical properties of high light output halide scintillators
David J. Singh;
12 Aug 2010
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5.
Validation of GEANT4 Monte Carlo Models with a Highly Granular Scintillator-Steel Hadron Calorimeter
C.Adloff; J.Blaha; J.-J.Blaising; C.Drancourt; A.Espargilière; R. Gaglione; N.Geffroy; Y.Karyotakis; J.Prast; G.Vouters; K. Francis; J.Repond; J.Schlereth; J.Smith; L.Xia; E.Baldolemar; J. Li; S. T.Park; M.Sosebee; A.P.White; J.Yu; T.Buanes; G.Eigen; Y.Mikami; N.K.Watson; G.Mavromanolakis; M.A. Thomson; D.R.Ward; W.Yan; D.Benchekroun; A.Hoummada; Y.Khoulaki; J.Apostolakis; A.Dotti; G. Folger; V. Ivantchenko; V.Uzhinskiy; M.Benyamna; C.Cârloganu; F. Fehr; P.Gay; S.Manen; L.Royer; G.C.Blazey; A.Dyshkant; J. G.R. Lima; V. Zutshi; J. -Y.Hostachy; L.Morin; U.Cornett; D.David; G. Falley; K.Gadow; P.Göttlicher; C.Günter; B.Hermberg; S.Karstensen; F.Krivan; A. -I. Lucaci-Timoce; S. Lu; B. Lutz; S.Morozov; V.Morgunov; M.Reinecke; F.Sefkow; P.Smirnov; M. Terwort; A.Vargas-Trevino; N. Feege; E. Garutti; I.Marchesinik; M.Ramilli; P.Eckert; T.Harion; A.Kaplan; H. -Ch.Schultz-Coulon; W.Shen; R.Stamen; B.Bilki; E.Norbeck; Y.Onel; G.W.Wilson; K.Kawagoe; P.D.Dauncey; A. -M.Magnan; V.Bartsch; M.Wing; F.Salvatore; E.Calvo Alamillo; M.-C. Fouz; J.Puerta-Pelayo; B.Bobchenko; M.Chadeeva; M.Danilov; A.Epifantsev; O.Markin; R.Mizuk; E.Novikov; V.Popov; V.Rusinov; E. Tarkovsky; N.Kirikova; V.Kozlov; P.Smirnov; Y. Soloviev; P.Buzhan; A. Ilyin; V.Kantserov; V.Kaplin; A.Karakash; E.Popova; V. Tikhomirov; C.Kiesling; K.Seidel; F.Simon; C.Soldner; M.Szalay; M. Tesar; L.Weuste; M.S.Amjad; J.Bonis; S.Callier; S. Conforti di Lorenzo; P.Cornebise; Ph.Doublet; F.Dulucq; J. Fleury; T. Frisson; N. van der Kolk; H. Li; G.Martin-Chassard; F.Richard; Ch. de la Taille; R.Pöschl; L.Raux; J.Rouëné; N.Seguin-Moreau; M.Anduze; V.Boudry; J-C.Brient; D. Jeans; P.Mora de Freitas; G.Musat; M.Reinhard; M.Ruan; H.Videau; B.Bulanek; J. Zacek; J.Cvach; P.Gallus; M.Havranek; M. Janata; J.Kvasnicka; D. Lednicky; M.Marcisovsky; I.Polak; J.Popule; L. Tomasek; M. Tomasek; P.Ruzicka; P.Sicho; J.Smolik; V.Vrba; J. Zalesak; B.Belhorma; H.Ghazlane; T. Takeshita; S.Uozumi; M. Götze; O. Hartbrich; J.Sauer; S.Weber; C. Zeitnitz;
13 Jun 2013
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6.
Electromagnetic response of a highly granular hadronic calorimeter
C. Adloff; J. Blaha; J.-J. Blaising; C. Drancourt; A. Espargilière; R. Gaglione; N. Geffroy; Y. Karyotakis; J. Prast; G. Vouters; K. Francis; J. Repond; J. Smith; L. Xia; E. Baldolemar; J. Li; S. T. Park; M. Sosebee; A. P. White; J. Yu; Y. Mikami; N. K. Watson T. Goto; G. Mavromanolakis; M. A. Thomson; D. R. Ward W. Yan; M. Benyamna; C. Cârloganu; F. Fehr; P. Gay; S. Manen; L. Royer; G. C. Blazey; A. Dyshkant; J. G. R. Lima; V. Zutshi; J. -Y. Hostachy; L. Morin; U. Cornett; D. David; R. Fabbri; G. Falley; K. Gadow; E. Garutti; P. Göttlicher; C. Günter; S. Karstensen; F. Krivan; A. -I. Lucaci-Timoce; S. Lu; B. Lutz; I. Marchesini; N. Meyer; S. Morozov; V. Morgunov; M. Reinecke; F. Sefkow; P. Smirnov; M. Terwort; A. Vargas-Trevino; N. Wattimena; O. Wendt; N. Feege; J. Haller; S. Richter; J. Samson P. Eckert; A. Kaplan; H. -Ch. Schultz-Coulon; W. Shen; R. Stamen; A. Tadday; B. Bilki; E. Norbeck; Y. Onel; G. W. Wilson; K. Kawagoe; S. Uozumi; J. A. Ballin; P. D. Dauncey; A. -M. Magnan; H. S. Yilmaz; O. Zorba; V. Bartsch; M. Postranecky; M. Warren; M. Wing; F. Salvatore; E. Calvo Alamillo; M.-C. Fouz; J. Puerta-Pelayo; V. Balagura; B. Bobchenko; M. Chadeeva; M. Danilov; A. Epifantsev; O. Markin; R. Mizuk; E. Novikov; V. Rusinov; E. Tarkovsky; Y. Soloviev; V. Kozlov; P. Buzhan; B. Dolgoshein; A. Ilyin; V. Kantserov; V. Kaplin; A. Karakash; E. Popova; S. Smirnov; A. Frey; C. Kiesling; K. Seidel; F. Simon; C. Soldner; L. Weuste; J. Bonis; B. Bouquet; S. Callier; P. Cornebise; Ph. Doublet; F. Dulucq; M. Faucci Giannelli; J. Fleury; G. Guilhem; H. Li; G. Martin-Chassard; F. Richard; Ch. de la Taille; R. Pöschl; L. Raux; N. Seguin-Moreau; F. Wicek; M. Anduze; V. Boudry; J-C. Brient; D. Jeans; P. Mora de Freitas; G. Musat; M. Reinhard; M. Ruan; H. Videau; B. Bulanek; J. Zacek; J. Cvach; P. Gallus; M. Havranek; M. Janata; J. Kvasnicka; D. Lednicky; M. Marcisovsky; I. Polak; J. Popule; L. Tomasek; M. Tomasek; P. Ruzicka; P. Sicho; J. Smolik; V. Vrba; J. Zalesak; B. Belhorma; H. Ghazlane; K. Kotera; M. Nishiyama; T. Takeshita; S. Tozuka;
20 Dec 2010
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7.
Rungs 1 to 4 of DFT Jacob's ladder: extensive test on the lattice constant, bulk modulus, and cohesive energy of solids
Fabien Tran; Julia Stelzl; Peter Blaha;
4 Mar 2016
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8.
Recent results of Micromegas sDHCAL with a new readout chip
C. Adloff; J. Blaha; J.-J. Blaising; M. Chefdeville; A. Dalmaz; C. Drancourt; A. Espargilière; R. Gaglione; N. Geffroy; J. Jacquemier; Y. Karyotakis; F. Peltier; J. Prast; S. Tsigaridas; Y. Tsipolitis; G. Vouters;
3 Feb 2012
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9.
Status of the Micromegas semi-DHCAL
C. Adloff; J. Blaha; J.-J. Blaising; M. Chefdeville; C. Drancourt; A. Espargiliere; R. Gaglione; N. Geffroy; Y. Karyotakis; J. Prast; G. Vouters;
19 Jul 2010
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10.
MICROMEGAS chambers for hadronic calorimetry at a future linear collider
C. Adloff; D. Attie; J. Blaha; S. Cap; M. Chefdeville; P. Colas; A. Dalmaz; C. Drancourt; A. Espargiliere; R. Gaglione; R. Gallet; N. Geffroy; I. Giomataris; J. Jaquemier; Y. Karyotakis; F. Peltier; J. Prast; G. Vouters;
17 Sep 2009
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11.
Electronic structure of the pyrochlore metals Cd2Os2O7 and Cd2Re2O7
D.J. Singh; P. Blaha; K. Schwarz; J.O. Sofo;
14 Aug 2001
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12.
Analysis of pumping mechanisms affecting the gain of the J=0-1 and J=2-1 lines in neonlike selenium
A Dasgupta; K G Whitney; M Blaha; M Buie;
1 Nov 1992   /  Phys Rev A, 46 (9), 5973-5984
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13.
Band gap of two-dimensional materials: thorough assessment of modern exchange-correlation functionals
Fabien Tran; Jan Doumont; Leila Kalantari; Peter Blaha; Tomáš Rauch; Pedro Borlido; Silvana Botti; Miguel A. L. Marques; Abhilash Patra; Subrata Jana; Prasanjit Samal;
25 May 2021
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14.
Detailed analysis of the performance of the modified Becke-Johnson potential
J. A. Camargo-Martinez; R. Baquero;
17 Jun 2012
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15.
Impact of dead zones on the response of a hadron calorimeter with projective and non-projective geometry
J. Blaha; N. Geffroy; Y. Karyotakis;
7 Feb 2011
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16.
First principles investigation of Bi$_6$Ti$_4$O$_{17}$: oxide ferroelectricity with a low band gap
Bo Xu; David J. Singh; Valentino R. Cooper; Yuan Ping Feng;
23 Nov 2010
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17.
13C-nuclear magnetic resonance study of [85% 13C-enriched proline]thyrotropin releasing factor: 13C-13C vicinal coupling constants and conformation of the proline residue.
Haar, W; Fermandjian, S; Vicar, J; Blaha, K; Fromageot, P;
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18.
Fermi surface of three-dimensional La1-xSrxMnO3 explored by soft-X-ray ARPES: Rhombohedral lattice distortion and its effect on magnetoresistance
L.L. Lev; J. Krempaský; U. Staub; V.A. Rogalev; T. Schmitt; M. Shi; P. Blaha; A.S. Mishchenko; A.A. Veligzhanin; Y.V. Zubavichus; M.B. Tsetlin; H. Volfová; J. Braun; J. Minár; V.N. Strocov;
1 Jun 2015
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19.
Was the Livermore x-ray laser pumped by recombination?
J P Apruzese; J Davis; M Blaha; P C Kepple; V L Jacobs;
28 Oct 1985   /  Phys Rev Lett, 55 (18), 1877-1879
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20.
Metallic "ferroelectricity" in the pyrochlore Cd2Re2O7
I A Sergienko; V Keppens; M McGuire; R Jin; J He; S H Curnoe; B C Sales; P Blaha; D J Singh; K Schwarz; D Mandrus;
13 Feb 2004   /  Phys Rev Lett, 92 (6), 065501
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