Critical optical-hysteresis regime and optical-bistability transformation
Section IV is devoted to exploring the critical atom-cavity coupling strength of the optical-hysteresis regime and discuss the physical effects induced by the coupling.
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Section IV is devoted to exploring the critical atom-cavity coupling strength of the optical-hysteresis regime and discuss the physical effects induced by the coupling.
Metal halide perovskite solar cells have gained enormous attention with remarkable power conversion efficiency in a short during of time
Although it is purposefully reduced, it cannot be fully eliminated and negatively impacts electron beam stability, reproducibility, and dependence on excitation history. Here, we present the
In this paper, we study the optical-hysteresis regime in a driven-dissipative Bose-Hubbard dimer under a symmetric configuration and analyze the classical optical bistability with the
We propose a method to obtain real hysteretical behavior in the optical area, and we analyze theoretically and experimentally its characteristics. This experimental method involves laser
We study, in this paper, the hysteresis dependence and the number of pulses in steady state as a function of both the small signal gain and the nonlinear coefficient of microstructured fiber.
Delve into the concept of hysteresis in optics, its underlying mechanisms, and its impact on optical systems and devices.
In perovskite solar cells, a hysteresis of the current–voltage curve is often observed and is usually attributed to moving ions. However, our device m
We provide a mathematical model to elucidate how a linear polarizer can be used to transform the shape of an optical-power hysteresis curve into the
The simultaneous compensation of hysteresis and creep in a PEA in the framework of open-loop control of active optics systems. The derivative Preisach model has to be inverted to
In this work we present a connection between dynamical systems and hysteresis loops and after that, we present some interesting hysteresis loops obtained using the Transverse Magneto-Optical Kerr
This study clearly reveals that the hysteresis actually originates from the electrode interface effect, and thus nonvolatile multilevel memory and adjustable logic
Hysteresis can be a dynamic lag between an input and an output that disappears if the input is varied more slowly; this is known as rate-dependent hysteresis.
The understanding of the origins of device degradation of perovskite solar cells remains limited. Here, the authors establish hysteresis as a diagnostic key to unveil and remedy degradation
By manipulating the optoelectronic effect of this device, we introduce a hysteresis effect at the silicon-silicon oxide interface, which in turn demonstrates multi-level, non-volatile optical data
Taking only two Liouvillian eigenvectors into account in the composite system, we derive an expression for the dependence of the hysteresis area on the sweeping speed and discuss its
We experimentally demonstrate the distribution of a bistable optical signal to two locations, and then independently and simultaneously control the hysteresis shape at each location using local sets of
Measuring Corneal Hysteresis Corneal hysteresis is measured non-invasively with an instrument called an Ocular Response Analyzer (ORA). The ORA delivers a gentle puff of air to the
In order to understand the hysteresis in perovskite solar cells, it is essential to locate the ionic defects and estimate their concentration in the device. One particularly powerful method for
A large number of optical sensors are based on the immobilization of a sensitive dye into a solid support, and mass transport of the analyte across the solid support is necessary to produce the
Also, hysteresis depends strongly on perovskite grain size, because large average grain size will lead to an increase in the grain''s contact surface
In this work, a hysteresis model is derived to capture sophisticated hysteresis of transmittance as observed in VO2. After phenomenological considerations, a model with four
Abstract: In high-efficiency crystalline silicon photovoltaic (PV) modules, the internal capacitance may lead to a strong hysteresis effect in current-voltage (I-V) measurements.
We have experimentally observed a “backward” (clockwise rotating) hysteresis cycle in the system of an optical ring cavity containing three-level (L-type configuration) rubidium atoms. The shape and