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Dive into the research topics where Shuolong Yang is active.

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Featured researches published by Shuolong Yang.


Physical Review Letters | 2012

Ultrafast Optical Excitation of a Persistent Surface-State Population in the Topological Insulator Bi2Se3

Jonathan Sobota; Shuolong Yang; James G. Analytis; Yulin Chen; I. R. Fisher; Patrick S. Kirchmann; Zhi-Xun Shen

Using femtosecond time- and angle-resolved photoemission spectroscopy, we investigated the nonequilibrium dynamics of the topological insulator Bi2Se3. We studied p-type Bi2Se3, in which the metallic Dirac surface state and bulk conduction bands are unoccupied. Optical excitation leads to a metastable population at the bulk conduction band edge, which feeds a nonequilibrium population of the surface state persisting for >10 ps. This unusually long-lived population of a metallic Dirac surface state with spin texture may present a channel in which to drive transient spin-polarized currents.


Physical Review Letters | 2013

Direct optical coupling to an unoccupied dirac surface state in the topological insulator Bi2Se3.

Jonathan Sobota; Shuolong Yang; A. F. Kemper; Jooseop Lee; F. Schmitt; Wei Li; R. G. Moore; James G. Analytis; I. R. Fisher; Patrick S. Kirchmann; T. P. Devereaux; Zhi-Xun Shen

We characterize the occupied and unoccupied electronic structure of the topological insulator Bi2Se3 by one-photon and two-photon angle-resolved photoemission spectroscopy and slab band structure calculations. We reveal a second, unoccupied Dirac surface state with similar electronic structure and physical origin to the well-known topological surface state. This state is energetically located 1.5 eV above the conduction band, which permits it to be directly excited by the output of a Ti:sapphire laser. This discovery demonstrates the feasibility of direct ultrafast optical coupling to a topologically protected, spin-textured surface state.


Nature Communications | 2014

Superconducting graphene sheets in CaC6 enabled by phonon-mediated interband interactions

Shuolong Yang; Jonathan Sobota; Christopher A. Howard; Chris J. Pickard; Makoto Hashimoto; D. H. Lu; Sung-Kwan Mo; Patrick S. Kirchmann; Zhi-Xun Shen

There is a great deal of fundamental and practical interest in the possibility of inducing superconductivity in a monolayer of graphene. But while bulk graphite can be made to superconduct when certain metal atoms are intercalated between its graphene sheets, the same has not been achieved in a single layer. Moreover, there is a considerable debate about the precise mechanism of superconductivity in intercalated graphite. Here we report angle-resolved photoelectron spectroscopy measurements of the superconducting graphite intercalation compound CaC6 that distinctly resolve both its intercalant-derived interlayer band and its graphene-derived π* band. Our results indicate the opening of a superconducting gap in the π* band and reveal a substantial contribution to the total electron–phonon-coupling strength from the π*-interlayer interband interaction. Combined with theoretical predictions, these results provide a complete account for the superconducting mechanism in graphite intercalation compounds and lend support to the idea of realizing superconducting graphene by creating an adatom superlattice.


Physical Review Letters | 2014

Distinguishing Bulk and Surface Electron-Phonon Coupling in the Topological Insulator Bi 2 Se 3 Using Time-Resolved Photoemission Spectroscopy

Jonathan A. Sobota; Shuolong Yang; Dominik Leuenberger; A. F. Kemper; James G. Analytis; I. R. Fisher; Patrick S. Kirchmann; T. P. Devereaux; Zhi-Xun Shen

We report time- and angle-resolved photoemission spectroscopy measurements on the topological insulator Bi(2)Se(3). We observe oscillatory modulations of the electronic structure of both the bulk and surface states at a frequency of 2.23 THz due to coherent excitation of an A(1g) phonon mode. A distinct, additional frequency of 2.05 THz is observed in the surface state only. The lower phonon frequency at the surface is attributed to the termination of the crystal and thus reduction of interlayer van der Waals forces, which serve as restorative forces for out-of-plane lattice distortions. Density functional theory calculations quantitatively reproduce the magnitude of the surface phonon softening. These results represent the first band-resolved evidence of the A(1g) phonon mode coupling to the surface state in a topological insulator.


Physical Review Letters | 2015

Inequivalence of Single-Particle and Population Lifetimes in a Cuprate Superconductor

Shuolong Yang; Jonathan Sobota; Dominik Leuenberger; Yu He; Makoto Hashimoto; D. H. Lu; H. Eisaki; Patrick S. Kirchmann; Zhi-Xun Shen

We study optimally doped Bi-2212 (T(c)=96  K) using femtosecond time- and angle-resolved photoelectron spectroscopy. Energy-resolved population lifetimes are extracted and compared with single-particle lifetimes measured by equilibrium photoemission. The population lifetimes deviate from the single-particle lifetimes in the low excitation limit by 1-2 orders of magnitude. Fundamental considerations of electron scattering unveil that these two lifetimes are in general distinct, yet for systems with only electron-phonon scattering they should converge in the low-temperature, low-fluence limit. The qualitative disparity in our data, even in this limit, suggests that scattering channels beyond electron-phonon interactions play a significant role in the electron dynamics of cuprate superconductors.


Applied Physics A | 2014

Electron propagation from a photo-excited surface: implications for time-resolved photoemission

Shuolong Yang; Jonathan Sobota; Patrick S. Kirchmann; Zhi-Xun Shen

We perform time- and angle-resolved photoelectron spectroscopy on p-type GaAs(110). We observe an optically excited population in the conduction band, from which the time scales of intraband relaxation and surface photovoltage decay are both extracted. Moreover, the photovoltage shift of the valence band intriguingly persists for hundreds of picoseconds at negative delays. By comparing to a recent theoretical study, we reveal that the negative-delay dynamics reflects the interaction of the photoelectrons with a photovoltage-induced electric field outside the sample surface. We develop a conceptual framework to disentangle the intrinsic electron dynamics from this long-range field effect, which sets the foundation for understanding time-resolved photoemission experiments on a broad range of materials in which poor electronic screening leads to surface photovoltage. Finally, we demonstrate how the long-lasting negative-delay dynamics in GaAs can be utilized to conveniently establish the temporal overlap of pump and probe pulses in a time-resolved photoemission setup.


Physical Review B | 2017

Three-dimensional nature of the band structure of ZrTe5 measured by high-momentum-resolution photoemission spectroscopy [3D nature ZrTe5 band structure measured by high-momentum-resolution photoemission spectroscopy]

H. Xiong; Jonathan A. Sobota; Shuolong Yang; H. Soifer; A. Gauthier; Ming-Hui Lu; Yang-Yang Lv; Shu-Hua Yao; D. H. Lu; Makoto Hashimoto; Patrick S. Kirchmann; Yan-Feng Chen; Z.-X. Shen

We have performed a systematic high-momentum-resolution photoemission study on ZrTe


Review of Scientific Instruments | 2016

Invited Article: High resolution angle resolved photoemission with tabletop 11 eV laser

Yu He; Inna Vishik; M. Yi; Shuolong Yang; Zhongkai Liu; James J. Lee; Sudi Chen; Slavko Rebec; Dominik Leuenberger; Alfred Zong; C. Michael Jefferson; R. G. Moore; Patrick S. Kirchmann; Andrew J. Merriam; Zhi-Xun Shen

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Nano Letters | 2015

Thickness-Dependent Coherent Phonon Frequency in Ultrathin FeSe/SrTiO3 Films

Shuolong Yang; Jonathan Sobota; Dominik Leuenberger; A. F. Kemper; James J. Lee; F. Schmitt; Wei Li; R. G. Moore; Patrick S. Kirchmann; Zhi-Xun Shen

using


Physical Review B | 2015

Classification of collective modes in a charge density wave by momentum-dependent modulation of the electronic band structure

Dominik Leuenberger; Jonathan Sobota; Shuolong Yang; A. F. Kemper; Paula Giraldo-Gallo; R. G. Moore; I. R. Fisher; Patrick S. Kirchmann; T. P. Devereaux; Zhi-Xun Shen

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Patrick S. Kirchmann

SLAC National Accelerator Laboratory

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Zhi-Xun Shen

SLAC National Accelerator Laboratory

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D. H. Lu

SLAC National Accelerator Laboratory

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A. F. Kemper

North Carolina State University

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T. P. Devereaux

Geballe Laboratory for Advanced Materials

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Hongyu Xiong

Geballe Laboratory for Advanced Materials

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