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Vanadium oxide: phase diagrams, structures, synthesis, and applications
Vanadium oxides with multioxidation states and various crystalline structures offer unique
electrical, optical, optoelectronic and magnetic properties, which could be manipulated for …
electrical, optical, optoelectronic and magnetic properties, which could be manipulated for …
Strongly correlated electron–photon systems
An important goal of modern condensed-matter physics involves the search for states of
matter with emergent properties and desirable functionalities. Although the tools for material …
matter with emergent properties and desirable functionalities. Although the tools for material …
Photo-induced non-volatile VO2 phase transition for neuromorphic ultraviolet sensors
In the quest for emerging in-sensor computing, materials that respond to optical stimuli in
conjunction with non-volatile phase transition are highly desired for realizing bioinspired …
conjunction with non-volatile phase transition are highly desired for realizing bioinspired …
Thermal tuning of terahertz metamaterial absorber properties based on VO 2
We present a novel, structurally simple, multifunctional broadband absorber. It consists of a
patterned vanadium dioxide film and a metal plate spaced by a dielectric layer. Temperature …
patterned vanadium dioxide film and a metal plate spaced by a dielectric layer. Temperature …
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 …
Lightwave electronics in condensed matter
Key properties of quantum materials stem from dynamic interaction chains that connect
stable electronic quasiparticles through short-lived coherences, which are difficult to control …
stable electronic quasiparticles through short-lived coherences, which are difficult to control …
A comprehensive review on emerging artificial neuromorphic devices
The rapid development of information technology has led to urgent requirements for high
efficiency and ultralow power consumption. In the past few decades, neuromorphic …
efficiency and ultralow power consumption. In the past few decades, neuromorphic …
Engineering crystal structures with light
The crystal structure of a solid largely dictates its electronic, optical and mechanical
properties. Indeed, much of the exploration of quantum materials in recent years including …
properties. Indeed, much of the exploration of quantum materials in recent years including …
Imaging with metamaterials
Metamaterials enable precise tailoring of light–matter interactions at the subwavelength
scale, permitting access to the full range of electromagnetic responses encoded in Maxwell's …
scale, permitting access to the full range of electromagnetic responses encoded in Maxwell's …
A high-speed programmable and scalable terahertz holographic metasurface based on tiled CMOS chips
Metasurfaces, which consist of arrays of subwavelength scatterers, can be used to precisely
control incident electromagnetic fields, but are typically static once fabricated. A dynamically …
control incident electromagnetic fields, but are typically static once fabricated. A dynamically …