#chaoyu
September 23, 2026 at 6:07 PM
Lin ChaoYu
#art
Via: www.linchaoyu.com/en
May 6, 2026 at 1:40 PM
March 22, 2026 at 6:08 PM
December 27, 2025 at 11:00 AM
xie chaoyu | © nhu xuan hua
December 21, 2023 at 9:29 PM
Chaoyu Zhang, Shanghao Shi, Heng Jin, Ning Wang, Y. Thomas Hou, Wenjing Lou: Aegis: Generative Gradient Masking for Privacy-Preserving Medical Federated Learning https://arxiv.org/abs/2609.38339 https://arxiv.org/pdf/2609.38339 https://arxiv.org/html/2609.38339
October 1, 2026 at 6:39 AM
#veryhot Xie Chaoyu by Ziqian Wang for Dazed China September 2020
July 10, 2024 at 12:43 PM
Chaoyu Zhang, Shanghao Shi, Heng Jin, Ning Wang, Y. Thomas Hou, Wenjing Lou
Aegis: Generative Gradient Masking for Privacy-Preserving Medical Federated Learning
https://arxiv.org/abs/2609.38339
October 2, 2026 at 7:21 AM
Xie Chaoyu by Ben Toms for Allure US Magazine December 2017
December 3, 2023 at 4:50 PM
Xie Chaoyu by Leslie Zhang, 2025.
January 21, 2026 at 7:48 PM
July 19, 2025 at 6:23 AM
GeoSplat: A Deep Dive into Geometry-Constrained Gaussian Splatting

Yangming Li, Chaoyu Liu, Lihao Liu, Simon Masnou, Carola-Bibian Schönlieb

tl;dr: high-order info->GS; manifold/varifold-based methods->geometric priors

arxiv.org/abs/2509.05075
September 8, 2025 at 1:07 PM
Unifying the Perspectives of NLP and Software Engineering: A Survey on Language Models for Code

Ziyin Zhang, Chaoyu Chen, Bingchang Liu, Cong Liao, Zi Gong, Hang Yu, Jianguo Li, Rui Wang

Action editor: Swarat Chaudhuri

https://openreview.net/forum?id=hkNnGqZnpa

#programming #software #language
December 7, 2024 at 11:39 PM
Xie Chaoyu by Nadine Ijewere for D Repubblica Magazine October 2022
November 20, 2023 at 7:49 PM
Research Highlight now online:

Orbital order observation in intermetallic crystals by Bei Zhang

www.nature.com/articles/s44... ($)

Highlighting the @natphys.nature.com Article by Wanru Ma, Yongqiang Cai, Zhenyu Wang, Ping Miao, Zhijun Wang, Chaoyu Chen and co-workers
#Chemsky
Orbital order observation in intermetallic crystals - Nature Synthesis
Nature Synthesis - Orbital order observation in intermetallic crystals
www.nature.com
July 29, 2026 at 2:46 PM
Ziteng Gao, Jiaqi Qu, Chaoyu Chen
A Hybrid Input based Deep Reinforcement Learning for Lane Change Decision-Making of Autonomous Vehicle
https://arxiv.org/abs/2509.01611
September 3, 2025 at 9:21 AM
It's that ai generated image of an ash baby that I remember seeing floating around Youtube.
youtu.be/wvBv2HV2pSk?...
Mount Vesuvius vs baby
YouTube video by Chaoyu
youtu.be
March 5, 2025 at 3:43 PM
Heng Jin, Chaoyu Zhang, Hexuan Yu, Wenjing Lou, Y. Thomas Hou: Privacy-Preserving Split Learning for Federated LLM Fine-Tuning https://arxiv.org/abs/2609.09794 https://arxiv.org/pdf/2609.09794 https://arxiv.org/html/2609.09794
September 10, 2026 at 6:42 AM
Video Generation Models: A Survey of Post-Training and Alignment

Chaoyu Li, Xiaoyi Gu, Yogesh Kulkarni et al.

Action editor: Sungwoong Kim

https://openreview.net/forum?id=YlUEWLESIu

#clips #video #generative
July 14, 2026 at 8:20 PM
Pan Du, Wangbo Zhao, Xinai Lu, Nian Liu, Zhikai Li, Chaoyu Gong, Suyun Zhao, Hong Chen, Cuiping Li, Kai Wang, Yang You
Unsupervised Learning for Class Distribution Mismatch
https://arxiv.org/abs/2505.06948
May 13, 2025 at 10:20 AM
METAL 51 A/W 2024-2025

Xie Chaoyu wearing Dior by Angie Couple

Styling Emanuele Carrera
Hair Edd López
Makeup Blau
Art Direction Danidevito
Casting Adrià Monje
Lighting Tomas Avila
November 15, 2024 at 12:00 PM
Shanghao Shi, Chaoyu Zhang, Heng Jin, Yang Xiao, Yevgeniy Vorobeychik, William Yeoh, Ning Zhang, Y. Thomas Hou, Wenjing Lou
From Efficiency to Leakage -- Privacy Backdoor in Federated Language Model Fine-Tuning
https://arxiv.org/abs/2606.20553
June 19, 2026 at 5:28 PM
Unifying the Perspectives of NLP and Software Engineering: A Survey on Language Models for Code

Ziyin Zhang, Chaoyu Chen, Bingchang Liu, Cong Liao, Zi Gong, Hang Yu, Jianguo Li, Rui Wang

Action editor: Swarat Chaudhuri

https://openreview.net/forum?id=hkNnGqZnpa

#programming #software #language
December 8, 2024 at 4:37 AM
Meta-substituted thienoviologen with enhanced radical stability via π-π interaction modulation for neutral aqueous organic flow batteries
Meta-substituted thienoviologen with enhanced radical stability via π-π interaction modulation for neutral aqueous organic flow batteries
Publication date: November 2024Source: Energy Storage Materials, Volume 73Author(s): Xu Liu, Chaoyu Bao, Zengrong Wang, Chenjing Liu, Xuri Zhang, Shuran Yang, Ya-Ke Li, Gao-Lei Hou, Ni Yan, Gang He
www.sciencedirect.com
November 25, 2024 at 10:56 PM
Exceeding 30% Efficiency of Red Perovskite Quantum Dot Light-Emitting Diodes via Interparticle Energy Dissipation Suppression
Zhiwei Yao, Changsheng Liang, Chenghao Bi*, Wenyuan Zhou, Ke Ren, Ming Deng, Shuo Ding* & Chaoyu Xiang*
Nano-Micro Lett. 18, 294 (2026).
doi.org/10.1007/s408...
Exceeding 30% Efficiency of Red Perovskite Quantum Dot Light-Emitting Diodes via Interparticle Energy Dissipation Suppression - Nano-Micro Letters
The performance limits of perovskite quantum dot (QD) light-emitting diodes (PeLEDs) remain incompletely explored currently. Energy dissipation arising from interdot electronic coupling in QD solid films is readily induced by reduced interparticle distances and delocalized electron wavefunctions, thereby triggering severe nonradiative recombination and impeding further efficiency gains. To mitigate this energy loss, 1H,1H-undecafluorohexylamine (11-PFHA), characterized by pronounced steric self-repulsion and concentrated electron density distribution, was employed. The steric self-repulsion of 11-PFHA enlarges interdot spacing, while its concentrated electron distribution restructures the QDs’ surface electron distribution and establishes a higher interfacial electronic potential barrier between adjacent QDs. The treatment of 11-PFHA effectively suppresses electronic coupling and concomitant energy dissipation. Consequently, 11-PFHA-treated red-emitting perovskite QDs exhibit a near-unity photoluminescence quantum yield. PeLEDs fabricated with these optimized QDs achieve record external quantum efficiencies (EQEs), reaching 28.9% at 640 nm and 32.0% at 657 nm, indicating the highest EQE values reported to date.
doi.org
May 14, 2026 at 6:40 AM