Optimal neutralization of negative space charges in photon-enhanced thermionic emission devices under bidirectional discharge

Fuente: arXiv
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Autores principales: Lin, Xinqiao, Fan, Zhiqiang, Zhang, Shunjie, Chen, Xiaohang, Yang, Zhimin, Chen, Jincan, Su, Shanhe
Formato: Preprint
Publicado: 2025
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author Lin, Xinqiao
Fan, Zhiqiang
Zhang, Shunjie
Chen, Xiaohang
Yang, Zhimin
Chen, Jincan
Su, Shanhe
author_facet Lin, Xinqiao
Fan, Zhiqiang
Zhang, Shunjie
Chen, Xiaohang
Yang, Zhimin
Chen, Jincan
Su, Shanhe
contents In this study, we innovatively modeled photon-enhanced thermionic emission (PETE) devices, incorporating positive ion injection and bidirectional discharge's effects on the space charge barrier simultaneously. Compared to previous models, our model allows the positive ion distribution function to be compatible with scenarios in which the anode motive is either higher or lower than the cathode motive, and also adapts to significant anode discharge. Through numerical simulations and parametric analyses, we found that: (1) As the ratio of the positive ion increases, the capability for space charge neutralization becomes stronger. (2) The lower the electron affinity is, the smaller the ratio of positive ions are required. (3) When the anode temperature is higher or the anode work function is lower, the impact of reverse discharge on the net current density is more pronounced. Conversely, when the anode temperature is higher or the anode work function is greater, the ratio of positive ions required to achieve complete space charge neutralization increases. This study further elucidates the mechanisms and characteristics of space charge neutralization effects in PETE devices, providing a theoretical foundation for optimizing their design. Additionally, the accompanying theory and algorithm possess the potential to spark innovative research across diverse fields.
format Preprint
id arxiv_https___arxiv_org_abs_2502_18539
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Optimal neutralization of negative space charges in photon-enhanced thermionic emission devices under bidirectional discharge
Lin, Xinqiao
Fan, Zhiqiang
Zhang, Shunjie
Chen, Xiaohang
Yang, Zhimin
Chen, Jincan
Su, Shanhe
Accelerator Physics
Statistical Mechanics
Applied Physics
Plasma Physics
In this study, we innovatively modeled photon-enhanced thermionic emission (PETE) devices, incorporating positive ion injection and bidirectional discharge's effects on the space charge barrier simultaneously. Compared to previous models, our model allows the positive ion distribution function to be compatible with scenarios in which the anode motive is either higher or lower than the cathode motive, and also adapts to significant anode discharge. Through numerical simulations and parametric analyses, we found that: (1) As the ratio of the positive ion increases, the capability for space charge neutralization becomes stronger. (2) The lower the electron affinity is, the smaller the ratio of positive ions are required. (3) When the anode temperature is higher or the anode work function is lower, the impact of reverse discharge on the net current density is more pronounced. Conversely, when the anode temperature is higher or the anode work function is greater, the ratio of positive ions required to achieve complete space charge neutralization increases. This study further elucidates the mechanisms and characteristics of space charge neutralization effects in PETE devices, providing a theoretical foundation for optimizing their design. Additionally, the accompanying theory and algorithm possess the potential to spark innovative research across diverse fields.
title Optimal neutralization of negative space charges in photon-enhanced thermionic emission devices under bidirectional discharge
topic Accelerator Physics
Statistical Mechanics
Applied Physics
Plasma Physics
url https://arxiv.org/abs/2502.18539