Unified first-principles theory of thermal properties of insulators
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August 2018 |
Effects of Impurities on the Thermal and Electrical Transport Properties of Cubic Boron Arsenide
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August 2021 |
Unusual high thermal conductivity in boron arsenide bulk crystals
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July 2018 |
Quantum mechanical prediction of four-phonon scattering rates and reduced thermal conductivity of solids
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January 2016 |
Simultaneously high electron and hole mobilities in cubic boron-V compounds: BP, BAs, and BSb
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August 2018 |
Thermoelectric coefficients of -doped silicon from first principles via the solution of the Boltzmann transport equation
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August 2016 |
High ambipolar mobility in cubic boron arsenide revealed by transient reflectivity microscopy
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July 2022 |
Electron-phonon drag enhancement of transport properties from a fully coupled ab initio Boltzmann formalism
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December 2020 |
Four-phonon scattering significantly reduces intrinsic thermal conductivity of solids
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October 2017 |
High ambipolar mobility in cubic boron arsenide
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July 2022 |
Zum elektrischen Widerstandsgesetz bei tiefen Temperaturen
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March 1930 |
Boron arsenide heterostructures: lattice-matched heterointerfaces and strain effects on band alignments and mobility
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January 2020 |
Thermal and thermoelectric transport measurements of an individual boron arsenide microstructure
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May 2016 |
Coupled transport of phonons and carriers in semiconductors: A case study of -doped GaAs
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February 2020 |
Significant Reduction of Lattice Thermal Conductivity by the Electron-Phonon Interaction in Silicon with High Carrier Concentrations: A First-Principles Study
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March 2015 |
Seebeck Effect in Germanium
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June 1954 |
QUANTUM ESPRESSO: a modular and open-source software project for quantum simulations of materials
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September 2009 |
Thermal transport by phonons and electrons in aluminum, silver, and gold from first principles
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February 2016 |
A measurement technique for thermoelectric power of CMOS layers at the wafer level
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November 2006 |
Comprehensive first-principles analysis of phonon thermal conductivity and electron-phonon coupling in different metals
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October 2019 |
Thermoelectric properties of semimetals
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September 2019 |
Electrons and Phonons
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book
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January 2001 |
Seebeck Effect in Silicon
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journal
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May 1955 |
Electron scattering by ionized impurities in semiconductors
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October 1981 |
First-Principles Determination of Ultrahigh Thermal Conductivity of Boron Arsenide: A Competitor for Diamond?
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July 2013 |
Theory of the Thermoelectric Power of Semiconductors
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December 1954 |
Thermal Expansion Coefficient and Lattice Anharmonicity of Cubic Boron Arsenide
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June 2019 |
Experimental observation of high thermal conductivity in boron arsenide
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July 2018 |
Thermoelectric Properties of High-Doped Silicon from Room Temperature to 900 K
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March 2013 |
Colossal phonon drag enhanced thermopower in lightly doped diamond
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October 2022 |
EPW: Electron–phonon coupling, transport and superconducting properties using maximally localized Wannier functions
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December 2016 |
Isotope scattering of large-wave-vector phonons in GaAs and InSb: Deformation-dipole and overlap-shell models
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July 1984 |
Micromachined CMOS thermoelectric generators as on-chip power supply
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September 2004 |
The elphbolt ab initio solver for the coupled electron-phonon Boltzmann transport equations
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February 2022 |
Fröhlich Electron-Phonon Vertex from First Principles
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October 2015 |
Experimental study of the proposed super-thermal-conductor: BAs
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February 2015 |
Electron-phonon interaction using Wannier functions
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October 2007 |
Zur Theorie der elektrischen und thermischen Leitfähigkeit von Metallen
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January 1930 |
Precise determination of lattice parameter and thermal expansion coefficient of silicon between 300 and 1500 K
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July 1984 |
Multimillimeter-sized cubic boron arsenide grown by chemical vapor transport via a tellurium tetraiodide transport agent
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June 2018 |
Ab initio optimization of phonon drag effect for lower-temperature thermoelectric energy conversion
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November 2015 |
High thermal conductivity in cubic boron arsenide crystals
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July 2018 |
Advanced capabilities for materials modelling with Quantum ESPRESSO
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October 2017 |