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Time-resolved ARPES studies of quantum materials
Angle-resolved photoemission spectroscopy (ARPES), with its exceptional sensitivity to both
the binding energy and the momentum of valence electrons in solids, provides unparalleled …
the binding energy and the momentum of valence electrons in solids, provides unparalleled …
Angle-resolved photoemission studies of quantum materials
The physics of quantum materials is dictated by many-body interactions and mathematical
concepts such as symmetry and topology that have transformed our understanding of matter …
concepts such as symmetry and topology that have transformed our understanding of matter …
Colloquium: Nonthermal pathways to ultrafast control in quantum materials
Recent progress in utilizing ultrafast light-matter interaction to control the macroscopic
properties of quantum materials is reviewed. Particular emphasis is placed on photoinduced …
properties of quantum materials is reviewed. Particular emphasis is placed on photoinduced …
Vacuum ultraviolet nonlinear metalens
Vacuum ultraviolet (VUV) light plays an essential role across science and technology, from
molecular spectroscopy to nanolithography and biomedical procedures. Realizing …
molecular spectroscopy to nanolithography and biomedical procedures. Realizing …
Attosecond science based on high harmonic generation from gases and solids
Recent progress in high power ultrafast short-wave and mid-wave infrared lasers has
enabled gas-phase high harmonic generation (HHG) in the water window and beyond, as …
enabled gas-phase high harmonic generation (HHG) in the water window and beyond, as …
Angle-resolved photoemission spectroscopy and its application to topological materials
Angle-resolved photoemission spectroscopy (ARPES)—an experimental technique based
on the photoelectric effect—is arguably the most powerful method for probing the electronic …
on the photoelectric effect—is arguably the most powerful method for probing the electronic …
Hot carriers in graphene–fundamentals and applications
Hot charge carriers in graphene exhibit fascinating physical phenomena, whose
understanding has improved greatly over the past decade. They have distinctly different …
understanding has improved greatly over the past decade. They have distinctly different …
Observation of Floquet-Bloch states on the surface of a topological insulator
The unique electronic properties of the surface electrons in a topological insulator are
protected by time-reversal symmetry. Circularly polarized light naturally breaks time-reversal …
protected by time-reversal symmetry. Circularly polarized light naturally breaks time-reversal …
High-Responsivity, High-Detectivity, Ultrafast Topological Insulator Bi2Se3/Silicon Heterostructure Broadband Photodetectors
H Zhang, X Zhang, C Liu, ST Lee, J Jie - ACS nano, 2016 - ACS Publications
As an exotic state of quantum matter, topological insulators have promising applications in
new-generation electronic and optoelectronic devices. The realization of these applications …
new-generation electronic and optoelectronic devices. The realization of these applications …
Subcycle observation of lightwave-driven Dirac currents in a topological surface band
Harnessing the carrier wave of light as an alternating-current bias may enable electronics at
optical clock rates. Lightwave-driven currents have been assumed to be essential for high …
optical clock rates. Lightwave-driven currents have been assumed to be essential for high …