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Group-VI monochalcogenides are attracting a great deal of attention due to their peculiar anisotropic properties. Very recently, it has been suggested that GeS could act as a promissory absorbing material with high input-output ratios,…

Materials Science · Physics 2017-04-20 Cesar E. P. Villegas , A. R. Rocha , A. Marini

Superconductivity mediated by phonons is typically conventional, exhibiting a momentum-independent s-wave pairing function, due to the isotropic interactions between electrons and phonons along different crystalline directions. Here, by…

Electromagnetically induced transparency (EIT) can be used to cool an atom in a harmonic potential close to the ground state by addressing several vibrational modes simultaneously. Previous experimental efforts focus on trapped ions and…

Quantum Physics · Physics 2024-05-15 Chang Hoong Chow , Boon Long Ng , Vindhiya Prakash , Christian Kurtsiefer

Using a fully ab-initio methodology, we demonstrate how the lattice vibrations couple with neutral excitons in monolayer WSe2 and contribute to the non-radiative excitonic lifetime. We show that only by treating the electron-electron and…

Strongly Correlated Electrons · Physics 2018-08-08 Himani Mishra , Anindya Bose , Amit Dhar , Sitangshu Bhattacharya

Coulomb interactions among electrons and holes in two-dimensional (2D) semimetals with overlapping valence and conduction bands can give rise to a correlated insulating ground state via exciton formation and condensation. One candidate…

Electronic structure near Fermi level of Pr2CoFeO6 (at 300 K) was investigated by X-ray photoemission spectroscopy (XPS) technique. All three cations, i.e., Pr, Co and Fe were found to be trivalent in nature. XPS analysis also suggested the…

Strongly Correlated Electrons · Physics 2019-05-22 Arkadeb Pal , Surajit Ghosh , Amish G. Joshi , P. K. Gupta , P. Prakash , Amitabh Das , A. K. Ghosh , Sandip Chatterjee

The unique energy band and crystal structure of the layered type-II Weyl semimetal TaIrTe4 hold great promise for high-performance broadband anisotropic optoelectronic devices. Therefore, gaining an in-depth understanding of the…

Optics · Physics 2025-10-29 Zheng Zhu , Jingwen Wang , Hao Yu , Jialin Lu , Tianshu Lai , Peng Yu , Tianran Jiang , Ke Chen

We developed the model of the internal phonon bottleneck to describe the energy exchange between the acoustically soft ultrathin metal film and acoustically rigid substrate. Discriminating phonons in the film into two groups, escaping and…

Instrumentation and Detectors · Physics 2018-07-24 M. Sidorova , A. Kozorezov , A. Semenov , A. Korneev , G. Chulkova , Yu. Korneeva , M. Mikhailov , A. Devizenko , G. Goltsman

The interactions between electrons and lattice vibrational modes play the key role in determining the carrier transport properties, thermoelectric performance and other physical quantities related to phonons in semiconductors. However, for…

Solid state cavity quantum electrodynamics is a rapidly advancing field which explores the frontiers of light-matter coupling. Plasmonic approaches are of particular interest in this field, since they carry the potential to squeeze optical…

We show that hole states in recently discovered single-layer InSe are strongly renormalized by the coupling with acoustic phonons. The coupling is enhanced significantly at moderate hole doping ($\sim$10$^{13}$ cm$^{-2}$) due to hexagonal…

Materials Science · Physics 2019-11-01 A. V. Lugovskoi , M. I. Katsnelson , A. N. Rudenko

We present a combined study from angle-resolved photoemission and density-functional theory calculations of the temperature-dependent electronic structure in the excitonic insulator candidate Ta$_2$NiSe$_5$. Our experimental measurements…

AgCrSe$_2$ is an example of a super-ionic conductor that has recently attracted attention for its low thermal conductivity. Here we investigate the optical properties of AgCrSe$_2$ in the ordered phase between 14 K and 374 K using…

Materials Science · Physics 2022-09-01 Jim Groefsema , Xuanbo Feng , Corentin Morice , Yingkai. Huang , Erik van Heumen

Using the band structure calculation and mean-field analysis of the derived three-chain Hubbard model with phonon degrees of freedom, we discuss the origin of the orthorhombic-to-monoclinic phase transition of the layered chalcogenide…

Strongly Correlated Electrons · Physics 2013-06-03 T. Kaneko , T. Toriyama , T. Konishi , Y. Ohta

Monolayer transition metal dichalcogenides (TMDs) possess superior optical properties, including the valley degree of freedom that can be accessed through the excitation light of certain helicity. While WS2 and WSe2 are known for their…

Time-resolved two color pump-probe polarization spectroscopy was performed at room temperature on SrTiO3 films grown directly on Si with film thickness varying from 2 nm to 7.8 nm. The E soft mode with a characteristic frequency of 0.2 THz…

Materials Science · Physics 2015-03-17 Cheng Cen , Maitri P. Warusawithana , Darrell G. Schlom , Jeremy Levy

Tuning many-body electronic phases by an external handle is of both fundamental and practical importance in condensed matter science. The tunability mirrors the underlying interactions, and gigantic electric, optical and magnetic responses…

Strongly Correlated Electrons · Physics 2021-10-04 Q. He , X. Que , L. Zhou , M. Isobe , D. Huang , H. Takagi

In Eu2ZnIrO6, effectively two atoms are active i.e. Ir is magnetically active, which results in complex magnetic ordering within the Ir sublattice at low temperature. On the other hand, although Eu is a van-vleck paramagnet, it is active in…

Strongly Correlated Electrons · Physics 2020-11-05 Birender Singh , M. Vogl , S. Wurmehl , S. Aswartham , B. Büchner , Pradeep Kumar

Inelastic light scattering studies on single crystal of electron-doped Ca(Fe0.95Co0.05)2As2 superconductor, covering the tetragonal to orthorhombic structural transition as well as magnetic transition at TSM ~ 140 K and superconducting…

Using a microscopic model of lattice vibrations in the STO(001) substrate, an additional 50 mev longitudinal optical (LO) interface mode is identified. The soft mode propagating mainly in the first TiO2 layer ("O chains") has stronger…

Superconductivity · Physics 2019-08-28 Baruch Rosenstein , B. Ya. Shapiro
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