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Electrocaloric cooling materials and devices for zero-global-warming-potential, high-efficiency refrigeration
Electrocaloric cooling technologies, enabled by the discovery of the giant electrocaloric
effect in dielectrics more than a decade ago, represents a zero-global-warming-potential …
effect in dielectrics more than a decade ago, represents a zero-global-warming-potential …
Dynamical control of topology in polar skyrmions via twisted light
Twisted light carries a nonzero orbital angular momentum, that can be transferred from light
to electrons and particles ranging from nanometers to micrometers. Up to now, the interplay …
to electrons and particles ranging from nanometers to micrometers. Up to now, the interplay …
Dynamical multiferroicity and magnetic topological structures induced by the orbital angular momentum of light in a nonmagnetic material
Recent studies have revealed that chiral phonons resonantly excited by ultrafast laser
pulses carry magnetic moments and can enhance the magnetization of materials. In this …
pulses carry magnetic moments and can enhance the magnetization of materials. In this …
Ultrafast neuromorphic dynamics using hidden phases in the prototype of relaxor ferroelectrics
Materials possessing multiple states are promising to emulate synaptic and neuronic
behaviors. Their operation frequency, typically in or below the GHz range, however, limits …
behaviors. Their operation frequency, typically in or below the GHz range, however, limits …
Ferroelectricity with Asymmetric Hysteresis in Metallic Ultrathin Films
J Lu, G Chen, W Luo, J Íñiguez, L Bellaiche, H ** in the polarization and electrocaloric response of 0.9 Pb (Mg 1/3 Nb 2/3) O 3–0.1 PbTiO 3 relaxor ferroelectric ceramics
In ferroelectrics, the effects of acceptor do** on electrical and electromechanical
properties, often referred to as the “hardening” effects, are commonly related to domain-wall …
properties, often referred to as the “hardening” effects, are commonly related to domain-wall …