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27 June 2022
 
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Results 1 to 20 of 102 for query "J. Wosnitza". (0.00 sec.)

[    1    2    3    4    5    6    ]   Next
1.
Coherent vs incoherent interlayer transport in layered metals
J. Wosnitza; J. Hagel; J.S. Qualls; J.S. Brooks; E. Balthes; D. Schweitzer; J.A. Schlueter; U. Geiser; J. Mohtasham; R.W. Winter; G.L. Gard;
27 Mar 2002
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2.
Spin-zero anomaly in the magnetic quantum oscillations of a two-dimensional metal
J. Wosnitza; V. M. Gvozdikov; J. Hagel; P. J. Meeson; J. A. Schlueter; R. W. Winter; G. L. Gard;
8 Dec 2004
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3.
Wosnitza et al. reply
J Wosnitza; G W Crabtree; H H Wang; K D Carlson; M D Vashon; J M Williams;
10 Aug 1992   /  Phys Rev Lett, 69 (6), 992
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4.
Magnetic-field induced band-structure change in CeBiPt
N. Kozlova; J. Hagel; M. Doerr; J. Wosnitza; D. Eckert; K.-H. Mueller; L. Schultz; I. Opahle; S. Elgazzar; Manuel Richter; G. Goll; G. Zwicknagl; T. Yoshino; T. Takabatake;
11 Feb 2005   /  Physical Review Letters 95, 086403 (2005) DOI: 10.1103/PhysRevLett.95.086403
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5.
Incoherence and enhanced magnetic quantum oscillations in the mixed state of a layered organic superconductor
V.M. Gvozdikov; J. Wosnitza;
18 Feb 2005
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6.
Interplay of frustration and magnetic field in the two-dimensional quantum antiferromagnet Cu(tn)Cl$_2$
A. Orendáčová; E. Čižmár; J. S. Xia; L. Yin; D. M. Pajerowski; L. Sedláková; J. Hanko; V. Zeleňák; M. Kajňaková; S. Zvyagin; M. Orendáč; A. Feher; J. Wosnitza; M. W. Meisel;
17 Jun 2009
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7.
Magnetic order in the S=1/2 two-dimensional molecular antiferromagnet, copper pyrazine perchlorate Cu(Pz)_2(ClO_4)_2
T. Lancaster; S. J. Blundell; M. L. Brooks; P. J. Baker; F. L. Pratt; J. L. Manson; M. M. Conner; F. Xiao; C. P. Landee; F. A. Chaves; S. Soriano; M. A. Novak; T. Papageorgiou; A. Bianchi; T. Herrmannsdorfer; J. Wosnitza; J. A. Schlueter;
13 Dec 2006
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8.
Magnetic properties of the quasi-two-dimensional S = 1/2 Heisenberg antiferromagnet [Cu(pyz)2(HF2)]PF6
E. Cizmar; S. A. Zvyagin; R. Beyer; M. Uhlarz; M. Ozerov; Y. Skourski; J. L. Manson; J. A. Schlueter; J. Wosnitza;
23 Nov 2009
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9.
Magnetic excitations in the spin-1 anisotropic Heisenberg antiferromagnetic chain system NiCl(2)-4SC(NH(2))(2)
S A Zvyagin; J Wosnitza; C D Batista; M Tsukamoto; N Kawashima; J Krzystek; V S Zapf; M Jaime; N F Oliveira; A Paduan-Filho;
26 Jan 2007   /  Phys Rev Lett, 98 (4), 047205
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10.
Field-induced metal-insulator transition in a two-dimensional organic superconductor
J Wosnitza; S Wanka; J Hagel; H L÷hneysen; J S Qualls; J S Brooks; E Balthes; J A Schlueter; U Geiser; J Mohtasham; R W Winter; G L Gard;
15 Jan 2001   /  Phys Rev Lett, 86 (3), 508-11
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11.
Field-induced metal-insulator transition in a two-dimensional organic superconductor
J. Wosnitza; S. Wanka; J. Hagel; H. v. Loehneysen; J. S. Qualls; J. S. Brooks; E. Balthes; J. A. Schlueter; U. Geiser; J. Mohtasham; R. W. Winter; G. L. Gard;
21 Nov 2000
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12.
Adiabatic physics of an exchange-coupled spin-dimer system: magnetocaloric effect, zero-point fluctuations, and two-dimensional universal behavior
J. Brambleby; P. A. Goddard; J. Singleton; M. Jaime; T. Lancaster; L. Huang; J. Wosnitza; C. V. Topping; K. E. Carreiro; H. E. Tran; Z. E. Manson; J. L. Manson;
27 Oct 2016
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13.
Evolution of antiferromagnetic domains in the all-in-all-out ordered pyrochlore Nd$_2$Zr$_2$O$_7$
L. Opherden; J. Hornung; T. Herrmannsdörfer; J. Xu; A. T. M. N. Islam; B. Lake; J. Wosnitza;
25 Apr 2017
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14.
Magnetotransport through graphene nanoribbons at high magnetic fields
S. Schmidmeier; S. H. Jhang; J. Wurm; Y. Skourski; J. Wosnitza; C. Strunk; D. Weiss; K. Richter; J. Eroms;
18 Nov 2011
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15.
Magnetic properties of the Haldane-gap material NENB
E. Cizmar; M. Ozerov; O. Ignatchik; T. P. Papageorgiou; J. Wosnitza; S. A. Zvyagin; J. Krzystek; Z. Zhou; C. P. Landee; B. R. Landry; M. M. Turnbull; J. L. Wikaira;
12 Sep 2007
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16.
Resistivity studies under hydrostatic pressure on a low-resistance variant of the quasi-2D organic superconductor kappa-(BEDT-TTF)2Cu[N(CN)2]Br: quest for intrinsic scattering contributions
C. Strack; C. Akinci; B. Wolf; M. Lang; J. A. Schlueter; J. Wosnitza; D. Schweitzer; J. Mueller;
19 Jul 2004
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17.
Superconductivity of highly spin-polarized electrons in FeSe probed by $^{77}$Se NMR
S. Molatta; D. Opherden; J. Wosnitza; Z. T. Zhang; T. Wolf; H. v. L├Âhneysen; R. Sarkar; P. K. Biswas; H.-J. Grafe; H. K├╝hne;
20 Oct 2020
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18.
Fermi-surface topology of the heavy-fermion system Ce$_{2}$PtIn$_{8}$
J. Klotz; K. Götze; E. L. Green; A. Demuer; H. Shishido; T. Ishida; H. Harima; J. Wosnitza; I. Sheikin;
3 Jun 2019
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19.
Quantum criticality in $A$Fe$_{2}$As$_{2}$ ($A$ = K, Rb, Cs) superconductors probed by $^{75}$As NMR spectroscopy
Z.T. Zhang; D. Dmytriieva; S. Molatta; J. Wosnitza; S. Khim; S. Gass; A.U.B. Wolter; S. Wurmehl; H.-J. Grafe; H. Kühne;
2 Mar 2017
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20.
Field-induced gapless electron pocket in the superconducting vortex phase of YNi2B2C as probed by magnetoacoustic quantum oscillations
J. Nössler; R. Seerig; S. Yasin; M. Uhlarz; S. Zherlitsyn; G. Behr; S.-L. Drechsler; G. Fuchs; H. Rosner; J. Wosnitza;
9 Feb 2017
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