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20222024
most citedFrequency-stable robust wireless power transfer based on high-order pseudo-Hermitian physics

50 citations · 72 across the 5 of their papers we have counts for

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physics.app-ph2024

Communication-Free Robust Wireless Power Transfer with Constant Output Power and Stable Frequency

Zhuoyu Zhang, Junan Lai, Yuangen Huang +7

A primary challenge in wireless power transfer (WPT) systems is to achieve efficient and stable power transmission without complex control strategies when load conditions change dy…

physics.app-ph2023

Observation of higher-order exceptional points in pseudo-Hermitian radio-frequency circuits

Ke Yin, Xianglin Hao, Yuangen Huang +3

Exceptional points (EP) in non-Hermitian systems have been widely investigated due to their enhanced sensitivity in comparison to standard systems. In this letter, we report the ob…

physics.app-ph2022

Ultrahigh-Resolution Wireless Capacitance Readout Based on Single Real Mode in Perturbed Parity-Time-Symmetric Sandwich-Type Electronic Trimer

Ke Yin, Yuangen Huang, Wenjing Yin +3

High-performance interrogation of inductor-capacitor (LC) microsensor has been a long-standing challenge due to the limited size of the sensor. Parity-time (PT) symmetry, an intrig…

physics.app-ph2022★ 50 cited

Frequency-stable robust wireless power transfer based on high-order pseudo-Hermitian physics

Xianglin Hao, Ke Yin, Jianlong Zou +4

Non-radiative wireless power transfer (WPT) technology has made considerable progress with the application of the parity-time (PT) symmetry concept. In this letter, we extend the s…

physics.app-ph2022★ 22 cited

Wireless Real-Time Capacitance Readout Based on Perturbed Nonlinear Parity-Time Symmetry

Ke Yin, Yuangen Huang, Chao Ma +4

In this article, we report a vector-network-analyzer-free and real-time LC wireless capacitance readout system based on perturbed nonlinear parity-time (PT) symmetry. The system is…