S. J. Shin
University of California, Berkeley
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Publication
Featured researches published by S. J. Shin.
Nano Letters | 2010
S. J. Shin; J. Guzman; C.W. Yuan; C. Y. Liao; Cosima N. Boswell-Koller; P. R. Stone; O. D. Dubon; Andrew M. Minor; Masashi Watanabe; Jeffrey W. Beeman; K. M. Yu; Joel W. Ager; D. C. Chrzan; E. E. Haller
Phase change materials are essential to a number of technologies ranging from optical data storage to energy storage and transport applications. This widespread interest has given rise to a substantial effort to develop bulk phase change materials well suited for desired applications. Here, we suggest a novel and complementary approach, the use of binary eutectic alloy nanoparticles embedded within a matrix. Using GeSn nanoparticles embedded in silica as an example, we establish that the presence of a nanoparticle/matrix interface enables one to stabilize both nanobicrystal and homogeneous alloy morphologies. Further, the kinetics of switching between the two morphologies can be tuned simply by altering the composition.
Scientific Reports | 2016
Choongyu Hwang; Shane A. Cybart; S. J. Shin; Sooran Kim; Kyoo Kim; T. G. Rappoport; Stephen M. Wu; C. Jozwiak; A. V. Fedorov; Sung-Kwan Mo; D. Lee; B. I. Min; E. E. Haller; R. C. Dynes; A. H. Castro Neto; Alessandra Lanzara
The interaction between two different materials can present novel phenomena that are quite different from the physical properties observed when each material stands alone. Strong electronic correlations, such as magnetism and superconductivity, can be produced as the result of enhanced Coulomb interactions between electrons. Two-dimensional materials are powerful candidates to search for the novel phenomena because of the easiness of arranging them and modifying their properties accordingly. In this work, we report magnetic effects in graphene, a prototypical non-magnetic two-dimensional semi-metal, in the proximity with sulfur, a diamagnetic insulator. In contrast to the well-defined metallic behaviour of clean graphene, an energy gap develops at the Fermi energy for the graphene/sulfur compound with decreasing temperature. This is accompanied by a steep increase of the resistance, a sign change of the slope in the magneto-resistance between high and low fields, and magnetic hysteresis. A possible origin of the observed electronic and magnetic responses is discussed in terms of the onset of low-temperature magnetic ordering. These results provide intriguing insights on the search for novel quantum phases in graphene-based compounds.
APL Materials | 2013
C. N. Boswell-Koller; S. J. Shin; J. Guzman; Matthew Sherburne; Karen C. Bustillo; C. A. Sawyer; James P. Mastandrea; J. W. Beeman; Joel W. Ager; Eugene E. Haller; D. C. Chrzan
The equilibrium geometries of embedded binary eutectic alloy nanostructures are used to determine the interfacial free energies between two phases of a strongly segregating alloy and the matrix. The solid Ge-SiO2 interfacial free energy at 600°C is determined to be 0.82–0.99 J/m2, in good agreement with estimates obtained from stress relaxation experiments.
Physical Review Letters | 2009
C.W. Yuan; D.O. Yi; Ian D. Sharp; S. J. Shin; C. Y. Liao; J. Guzman; Joel W. Ager; E. E. Haller; D. C. Chrzan
Physical Review B | 2009
C.W. Yuan; D.O. Yi; Ian D. Sharp; S. J. Shin; C. Y. Liao; J. Guzman; Joel W. Ager; E. E. Haller; D. C. Chrzan
MRS Proceedings | 2009
S. J. Shin; J. Guzman; C.W. Yuan; C. Y. Liao; P. R. Stone; O. D. Dubon; Andrew M. Minor; Masashi Watanabe; Joel W. Ager; D. C. Chrzan; E. E. Haller
Bulletin of the American Physical Society | 2016
Choongyu Hwang; Shane A. Cybart; Stephen M. Wu; R. C. Dynes; S. J. Shin; E. E. Haller; Sooran Kim; Kyoo Kim; B. I. Min; T. G. Rappoport; C. Jozwiak; A. V. Fedorov; Sung-Kwan Mo; A. H. Castro Neto; D. Lee; Alessandra Lanzara
Archive | 2015
Shane A. Cybart; Stephen M. Wu; R. C. Dynes; S. J. Shin; E. E. Haller; Sooran Kim; Kyoo Kim; B. I. Min; T. G. Rappoport; C. Jozwiak; A. H. Castro Neto; Alessandra Lanzara
Bulletin of the American Physical Society | 2013
Choongyu Hwang; Chris Jozwiak; S. J. Shin; Eugene H. Haller; Alessandra Lanzara
Bulletin of the American Physical Society | 2010
D. C. Chrzan; S. J. Shin; J. Guzman; C.W. Yuan; C. Y. Liao; C.N. Boswell-Koller; P. R. Stone; O. D. Dubon; Andrew M. Minor; Masashi Watanabe; J. W. Beeman; K. M. Yu; Joel W. Ager; Eugene E. Haller