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Spectral dynamics of shift current in ferroelectric semiconductor SbSI
by
Nakamura, M.
, Morimoto, T.
, Tokura, Y.
, Ogawa, N.
, Kaneko, Y.
, Kawasaki, M.
, Ogino, M.
, Nagaosa, N.
, Sotome, M.
, Fujioka, J.
, Zhang, Y.
in
Antimony
/ Applied Physical Sciences
/ bulk matter
/ CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS
/ Current carriers
/ Electromagnetic radiation
/ Electron clouds
/ Electron transitions
/ Energy gap
/ Ferroelectric materials
/ Ferroelectricity
/ First principles
/ Fruits
/ Iodides
/ Optical transition
/ Photoelectric effect
/ Photoelectric emission
/ Photoexcitation
/ Photovoltaic cells
/ photovoltaic effect
/ Physical Sciences
/ picosecond techniques
/ Solar cells
/ Sulfur
/ Time
2019
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Spectral dynamics of shift current in ferroelectric semiconductor SbSI
by
Nakamura, M.
, Morimoto, T.
, Tokura, Y.
, Ogawa, N.
, Kaneko, Y.
, Kawasaki, M.
, Ogino, M.
, Nagaosa, N.
, Sotome, M.
, Fujioka, J.
, Zhang, Y.
in
Antimony
/ Applied Physical Sciences
/ bulk matter
/ CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS
/ Current carriers
/ Electromagnetic radiation
/ Electron clouds
/ Electron transitions
/ Energy gap
/ Ferroelectric materials
/ Ferroelectricity
/ First principles
/ Fruits
/ Iodides
/ Optical transition
/ Photoelectric effect
/ Photoelectric emission
/ Photoexcitation
/ Photovoltaic cells
/ photovoltaic effect
/ Physical Sciences
/ picosecond techniques
/ Solar cells
/ Sulfur
/ Time
2019
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Spectral dynamics of shift current in ferroelectric semiconductor SbSI
by
Nakamura, M.
, Morimoto, T.
, Tokura, Y.
, Ogawa, N.
, Kaneko, Y.
, Kawasaki, M.
, Ogino, M.
, Nagaosa, N.
, Sotome, M.
, Fujioka, J.
, Zhang, Y.
in
Antimony
/ Applied Physical Sciences
/ bulk matter
/ CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS
/ Current carriers
/ Electromagnetic radiation
/ Electron clouds
/ Electron transitions
/ Energy gap
/ Ferroelectric materials
/ Ferroelectricity
/ First principles
/ Fruits
/ Iodides
/ Optical transition
/ Photoelectric effect
/ Photoelectric emission
/ Photoexcitation
/ Photovoltaic cells
/ photovoltaic effect
/ Physical Sciences
/ picosecond techniques
/ Solar cells
/ Sulfur
/ Time
2019
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Spectral dynamics of shift current in ferroelectric semiconductor SbSI
Journal Article
Spectral dynamics of shift current in ferroelectric semiconductor SbSI
2019
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Overview
Photoexcitation in solids brings about transitions of electrons/holes between different electronic bands. If the solid lacks an inversion symmetry, these electronic transitions support spontaneous photocurrent due to the geometric phase of the constituting electronic bands: the Berry connection. This photocurrent, termed shift current, is expected to emerge on the timescale of primary photoexcitation process. We observe ultrafast evolution of the shift current in a prototypical ferroelectric semiconductor antimony sulfur iodide (SbSI) by detecting emitted terahertz electromagnetic waves. By sweeping the excitation photon energy across the bandgap, ultrafast electron dynamics as a source of terahertz emission abruptly changes its nature, reflecting a contribution of Berry connection on interband optical transition. The shift excitation carries a net charge flow and is followed by a swing over of the electron cloud on a subpicosecond timescale. Understanding these substantive characters of the shift current with the help of first-principles calculation will pave the way for its application to ultrafast sensors and solar cells.
Publisher
National Academy of Sciences
Subject
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