摘要: Dielectric laser accelerators (DLAs) can achieve acceleration gradients exceeding those of conventional radio-frequency accelerators by one to two orders of magnitude. Existing DLA design approaches rely heavily on empirical parameter tuning and single-variable optimization, which fundamentally constrains performance enhancement. Here, a new optimization strategy for DLA structures is proposed based on the Gated Adaptive Network for Deep Automated Learning of Features (GANDALF). This framework integrates key parameters such as geometric configurations, material properties, and optical field characteristics into a comprehensive analysis. By accurately predicting particle energy gain, the structural parameters are optimized, significantly improving DLA performance. The proposed approach outperforms traditional computational methods, particularly for nonperiodic structures, enabling continuous particle acceleration. The GANDALF model demonstrates high accuracy, robustness, and adaptability, yielding an average acceleration gradient of 2.8 GV/m (Y2O3), enabling sustained acceleration in the majority of the acceleration channel, with a beam spot radius of 3.13 µm. Additionally, a cascaded DLA design concept is introduced and validated, paving the way for extended acceleration lengths on photonic chips.
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来自:
王度
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分类:
核科学技术
>>
粒子加速器
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说明:
ManuCurrent version: Preprint (Version 1)
Corresponding journal version: Accepted for publication in Nuclear Science and Techniques (NST) (formal publication pending).
Other submissions status: No other journal or conference submissions of this full manu
This preprint is intended solely for open academic discussion and prior dissemination, and does not constitute duplicate publication.
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投稿状态:
已被期刊录用
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引用:
ChinaXiv:202604.00319
(或此版本
ChinaXiv:202604.00319V1)
DOI:10.12074/202604.00319
CSTR:32003.36.ChinaXiv.202604.00319
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科创链TXID:
18822a3b-651f-4458-8e5d-5f1b305035b1
- 推荐引用方式:
PengBo, Chen,ShaoYi, Wang,WenBo, Zhang,RongWei, Zha,Bin, Sun,JiaXing, Wen,Cheng, Lei,ZongQing, Zhao,Du, Wang.Deep Learning-Optimized Dielectric Laser Accelerators: High-Gradient Performance and Cascaded Photonic Chip.null.[DOI:10.12074/202604.00319]
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