Research Terms
Electrical Energy Dielectric Properties Superconductivity Electromagnetism Magnetic Technology Applied Physics Solid State Physics Phase Transformations Heat Transfer
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Capan, C.; Jo, Y.-J.; Balicas, L.; Goodrich, R.G.; DiTusa, J.F.; Vekhter, I.; Murphy, T.P.; Bianchi, A.D.; Pham, L.D.; Cho, J.Y.; Chan, J.Y.; Young, D.P. and Fisk, Z., Fermi surface evolution through a heavy-fermion superconductor-to-antiferromagnet transition: de Haas–van Alphen effect in Cd-substituted CeCoIn5, Phys. Rev. B, 82, 035112 (2010) | |||||||||||||||||||||||||||||||||||||||||||||||
Ci, L.; Song, L.; Jin, D.; Jariwala, D.; Wu, D.; Li, Y.; Srivastava, A.; Wang, Z.F.; Storr, K.; Balicas, L.; Liu F. and Ajayan, P.M., Atomic layers of hybridized boron nitride and graphene domains, Nature Materials, 9, 430 (2010) | |||||||||||||||||||||||||||||||||||||||||||||||
Conner, B.S.; Zhou, H.D.; Jo, Y.J.; Balicas, L.; Wiebe, C.R.; Carlo, J.P.; Uemura, Y.J.; Aczel, A.A.; Williams, T.J. and Luke, G.M., Possible Bose-Einstein condensate of magnons in single-crystalline Pb2V3O9, Phys. Rev. B, 81, 132401 (2010) | |||||||||||||||||||||||||||||||||||||||||||||||
Cyr-Choinière, O.; Daou, R.; Chang, J.; Laliberté, F.; Doiron-Leyraud, N.; LeBoeuf, D.; Jo, Y.J.; Balicas, L.; Yan, J.-Q.; Cheng, J.-G.; Zhou, J.-S.; Goodenough, J.B. and Taillefer, L., Zooming on the quantum critical point in Nd-LSCO,Physica C, 470, S12 (2010) | |||||||||||||||||||||||||||||||||||||||||||||||
Lumata, L.L.; Besara, T.; Kuhns, P.L.; Reyes, A.P.; Zhou, H.D.; Wiebe, C.R.; Balicas, L.; Jo, Y.J.; Brooks, J.S.; Takano, Y.; Case, M.J.; Qiu, Y.; Copley, J.R.D.; Gardner, J.S.; Choi, K.Y.; Dalal, N.S. and Hoch, M.J.R., Low-temperature spin dynamics in the kagome system Pr3Ga5SiO14, Phys. Rev. B, 81, 224416 (2010) [read online] | |||||||||||||||||||||||||||||||||||||||||||||||
Nellutla, S.; Pati, M.; Jo, Y.-J.; Zhou, H.D.; Moon, B.H.; Pajerowski, D.M.; Yoshida, Y.; Janik, J.A.; Balicas, L.; Lee, Y.; Meisel, M.W.; Takano, Y., Wiebe, C.R. and Dalal, N.S., Magnetic-field induced quantum phase transition of the S=1/2 antiferromagnet K2NaCrO8, Phys. Rev. B, 81, 064331-064337 (2010) | |||||||||||||||||||||||||||||||||||||||||||||||
Samulon, E.C.; Al-Hassanieh, K.A.; Jo, Y.-J.; Shapiro, M.C.; Balicas, L.; Batista, C.D. and Fisher, I.R., Anisotropic phase diagram of the frustrated spin dimer compound Ba3Mn2O8, Phys. Rev. B, 81, 104421 (2010) | |||||||||||||||||||||||||||||||||||||||||||||||
Zhou, H.D.; Choi, E.S.; Jo, Y.J.; Balicas, L.; Lu, J.; Lumata, L.L.; Urbano, R.R.; Kuhns, P.L.; Reyes, A.P.; Brooks, J.S.; Stillwell, R.; Tozer, S.W.; Wiebe, C.R.; Whalen, J. and Siegrist, T., Metamagnetic transition in single-crystal Bi4Cu3V2O14, Phys. Rev. B, 82, 054435 (2010) [read online] | |||||||||||||||||||||||||||||||||||||||||||||||
Aczel, A.A.; Kohama, Y.; Jaime, M.; Ninios, K.; Chan, H.B.; Balicas, L.; Dabkowska, H.A. and Luke, G.M., Bose-Einstein condensation of triplons in Ba3Cr2O8, Phys. Rev. B Rapid Commun., 79, 100409 (2009) | |||||||||||||||||||||||||||||||||||||||||||||||
Capan, C.; Balicas, L.; Murphy, T.P.; Palm, E.C.; Movshovich, R.; Hall, D.; Tozer, S.W.; Hundley, M.F.; Bauer, E.D.; Thompson, J.D.; Sarrao, J.L.; DiTusa, J.F.; Goodrich, R.G. and Fisk, Z., Unusual metamagnetism in CeIrIn5, Phys. Rev. B, 80, 094518 (2009) | |||||||||||||||||||||||||||||||||||||||||||||||
Daou, R.; Leyraud, N.D.; LeBoeuf, D.; Li, S.; Laliberté, F.; Cyr-Choinière, O.; Jo, Y.J.; Balicas, L.; Yan, J.-Q.; Zhou, J.-S.; Goodenough, J.B. and Taillefer, L., Linear temperature dependence of resistivity and change in the Fermi surface at the pseudogap critical point of a high-Tc superconductor, Nature Physics, 5, 31 (2009) | |||||||||||||||||||||||||||||||||||||||||||||||
Fauqué, B.; Yang, H.; Sheikin, I.; Balicas, L.; Issi, J-P and Behnia, K., Hall plateaus at magic angles in bismuth beyond the quantum limit, Phys. Rev. B, 79, 245124 (2009) | |||||||||||||||||||||||||||||||||||||||||||||||
Hall, D.; Balicas, L.; Fisk, Z.; Goodrich, R.G.; Alver, U. and Sarrao, J.L., High-field de Haas–van Alphen studies of the Fermi surfaces of LaMIn5 (M=Co,Rh,Ir), Phys. Rev. B, 79, 033106 (2009) | |||||||||||||||||||||||||||||||||||||||||||||||
Janik, J.A.; Zhou, H.D.; Jo, Y.J.; Balicas, L.; Macdougall, G.J.; Luke, G.M.; Garrett, J.D.; McClellan, K.J.; Bauer, E.D.; Sarrao, J.L.; Qiu, Y.; Copley, J.R.D.; Buyers, W.J.L. and Wiebe, C.R., Itinerant spin excitation near the hidden-order transition in URu2Si2, J. Phys. -Condens. Mat., 21, 192202 (2009) | |||||||||||||||||||||||||||||||||||||||||||||||
Jo, Y.J.; Jaroszynski, J.; Yamamoto, A.; Gurevich, A.; Riggs, S.C.; Boebinger, G.S.; Larbalestier, D.; Wen, H.H.; Zhigadlo, N.D.; Katrych, S.; Bukowski, Z.; Karpinski, J.; Liu, R.H.; Chen, H.; Chen, X.H. and Balicas, L., High-field phase-diagram of Fe arsenide superconductors, Physica C, 469, 566 (2009) | |||||||||||||||||||||||||||||||||||||||||||||||
Jo, Y.J.; Lee, S.; Choi, E.S.; Yi, H.T.; Ratcliff, W.; Choi, Y.J.; Kiryukhin, V.; Cheong, S.W. and Balicas, L., 3:1 magnetization plateau and suppression of ferroelectric polarization in an Ising chain multiferroic, Phys. Rev. B, 79, 012407 (2009) | |||||||||||||||||||||||||||||||||||||||||||||||
Kikugawa, N.; Balicas, L. and Mackenzie, A.P., Physical Properties of Single-Crystalline CaRuO3 Grown by a Floating-Zone Method, J. Phys. Soc. Japan, 78, 014701 (2009) | |||||||||||||||||||||||||||||||||||||||||||||||
O'Farrell, E.C.T.; Tompsett, D.A.; Sebastian, S.E.; Harrison, N.; Capan, C.; Balicas, L.; Kuga, K.; Matsuo, A.; Kindo, K.; Tokunaga, M.; Nakatsuji, S.; Csányi, G.; Fisk, Z. and Sutherland, M.L., Role of f Electrons in the Fermi Surface of the Heavy Fermion Superconductor beta-YbAlB4, Phys. Rev. Lett., 102, 216402 (2009) | |||||||||||||||||||||||||||||||||||||||||||||||
Riggs, S.C.; Kemper, J.B.; Jo, Y.; Stegen, Z.; Balicas, L.; Boebinger, G.S.; Balakirev, F.F.; Migliori, A.; Chen, H.; Liu, R.H. and Chen, X.H., Magnetic-field-induced log-T insulating behavior in the resistivity of fluorine-doped SmFeAsO1−xFx, Phys. Rev. B, 79, 212510 (2009) | |||||||||||||||||||||||||||||||||||||||||||||||
Yamamoto, A.; Jaroszynski, J.; Tarantini, C.; Balicas, L.; Jiang, J.; Gurevich, A.; Larbalestier, D.C.; Jin, R.; Sefat, A.S.; McGuire, M.A.; Sales, B.C.; Christen, D.K. and Mandrus, D., Small anisotropy, weak thermal fluctuations, and high field superconductivity in Co-doped iron pnictide Ba(Fe1−xCox)2As2, Appl. Phys. Lett., 94, 062511 (2009) | |||||||||||||||||||||||||||||||||||||||||||||||
Zhou, H.D.; Lumata, L.L.; Kuhns, P.L.; Reyes, A.P.; Choi, E.S.; Dalal, N.S.; Lu, J.; Jo, Y.J.; Balicas, L.; Brooks, J.S. and Wiebe, C.R., Ba3NbFe3Si2O14: A New Multiferroic with a 2D Triangular Fe3+ Motif, Chem. Mater., 21 (1), 156-159 (2009) | |||||||||||||||||||||||||||||||||||||||||||||||
Zhou, H.D.; Wiebe, C.R.; Jo, Y.J.; Balicas, L.; Urbano, R. R.; Lumata, L.L.; Brooks, J.S.; Reyes, A.P.; Qiu, Y.; Copley, J.R.D. and Gardner, J.S., Chemical Pressure Induced Spin Freezing Phase Transition in Kagome Pr Langasites,Phys. Rev. Lett., 102, 067203 (2009) |
American Physical Society, Member; 1995 - present
Single Investigator Award, BES-DOE; 2009 - 2009
Science, American Society of the Advancement of Science; 2008 - 2013
Europhysics Letters, EDP-Sciences; 2003 - 2013
Physical Review B, American Physical Society; 1999 - 2013
Physical Review Letters, American Physical Letters; 1999 - 2013
Torque magnetometry in single layer oxypnictide single crystals; Department Seminar; Physics Department, University of Florida; 2011
Anisotropic Hysteretic Hall Effect and Magnetic Control of Chiral Domains in the Chiral Spin States of Pr2Ir2O7; Novel Phenomena in Frustrated Systems; Los Alamos National Lab; 2011
Torque magnetometry in single-layer oxypnictide single-crystals; Departamental Seminar; Physics Department - University of Maryland; 2010
High Magnetic Fields as a Probe to Unveil the Physical Properties of the Newly Discovered Fe Oxypnictide Superconductors and Related Compounds; DOE-BES-Experimental Condensed Matter Physics Principal Investigators Meeting; Deparment of Energy; 2011
Field-induced magneto-chiral domains in the frustrated metallic pyrochlore Pr2Ir2O7; Strongly Correlated Electron Systems Conference; University of Cambridge-UK; 2011
Metallic and insulating spin liquids: role of spin-chirality and fermionic-like spin excitations; Department Seminar; Penn State University; 2011
Brief overview of the National High Magnetic Field Laboratory; National Honors Society - Motivational Seminar; Leon High School - Tallahassee; 2011
The present technology describes a light-induced diode-like response in multi-layered MoSe2 field-effect transistors. The sense of current rectification can be controlled by the back-gate voltage which is able to modulate the relative amplitude between both Schottky barriers at the electrical contacts. This effect corresponds to a new form of optoelectronic switch or gate that also yields a photovoltaic response. In addition, one can harvest photovoltaic currents from such devices based on transition metal dichalcogenides without requiring PN-junctions. In fact, research suggests that the photovoltaic efficiency can be increased by just increasing the relative asymmetry between both Schottky barriers in these field-effect transistors. This new electro-optical effect, namely light induced diode behavior whose sense of current rectification is controllable by a gate voltage, produces a new type of optoelectronic switch having a potential for technological applications.