* 通讯作者Corresponding author  |  † 并列第一Equal contribution Google Scholar

代表性论文
Selected Publications

Multimode Single-Ring Photonic Molecule

Jinsheng Lu*, Ileana-Cristina Benea-Chelmus, Vincent Ginis, Marcus Ossiander, Danilo Shchepanovich, Federico Capasso*

Physical Review Letters, 136, 103803, 2026. PDF Featured in PhysicsFeatured in Physics

We demonstrate that a single microring resonator supporting multiple transverse modes behaves as a photonic molecule, exhibiting hybridized resonances and controllable mode splitting analogous to coupled quantum systems—all within one ring.

Cascaded-mode interferometers: Spectral shape and linewidth engineering

Jinsheng Lu*, Ileana-Cristina Benea-Chelmus, Vincent Ginis, Marcus Ossiander, Federico Capasso*

Science Advances, 11(12), eadt4154, 2025. PDF Harvard SEAS Phys.org Optics.org Science Daily EurekAlert! AZoOptics ElectronicsOnline Mirage News Bioengineer.org ScienMag 搜狐

We introduce a new class of integrated photonic interferometers based on sequential mode conversions, enabling arbitrary spectral shaping and linewidth engineering far beyond the limits of conventional single-mode resonators.

Helicity and Polarization Gradient Optical Trapping in Evanescent Fields

Jinsheng Lu, Vincent Ginis, Soon Wei Daniel Lim, Federico Capasso*

Physical Review Letters, 131, 143803, 2023. PDF 新闻报道News

We reveal that evanescent optical fields carry helicity and polarization gradients that generate novel trapping forces, enabling selective, chirality-sensitive manipulation of nanoparticles near waveguide surfaces.

Polarization-Dependent Forces and Torques at Resonance in a Microfiber-Microcavity System

Jinsheng Lu, Vincent Ginis*, Cheng-Wei Qiu, Federico Capasso*

Physical Review Letters, 130, 183601, 2023. PDF Featured in PhysicsFeatured in Physics Nature research highlight

We demonstrate precise control of optical forces and torques through polarization in a coupled microfiber–microcavity system, revealing a resonant mechanism for all-optical optomechanical actuation.

Light-Induced Pulling and Pushing by the Synergic Effect of Optical Force and Photophoretic Force

Jinsheng Lu, Hangbo Yang, Lina Zhou, Yuanqing Yang, Si Luo, Qiang Li, Min Qiu*

Physical Review Letters, 118(4), 043601, 2017. PDF 编辑推荐Editors' Suggestion Featured in PhysicsFeatured in Physics 封面文章Cover Article 中国光学十大进展候选 《物理》报道

We discover that the synergy of optical radiation pressure and photophoretic force enables a single laser beam to simultaneously push and pull absorbing particles, revealing a bidirectional light-driven transport mechanism.

期刊论文
Journal Articles
2026
[23]

Raman suppression in nanophotonics enabled by multimode spectral filtering

Yunxiang Song†, Jinsheng Lu†, Xinrui Zhu, Danxian Liu, Zongda Li, Pawan Ratra, Norman Lippok, Miro Erkintalo, Federico Capasso*, Marko Lončar*

arXiv preprint, arXiv:2605.09219, 2026. PDF

We show that multimode spectral filtering in nanophotonic waveguides can effectively suppress Raman noise, paving the way for cleaner on-chip light sources and coherent photonic applications.

[22]

Multimode Single-Ring Photonic Molecule

Jinsheng Lu*, Ileana-Cristina Benea-Chelmus, Vincent Ginis, Marcus Ossiander, Danilo Shchepanovich, Federico Capasso*

Physical Review Letters, vol. 136, 103803, 2026. PDF Featured in PhysicsFeatured in Physics

We demonstrate that a single microring resonator supporting multiple transverse modes behaves as a photonic molecule, exhibiting hybridized resonances and controllable mode splitting analogous to coupled quantum systems—all within one ring.

2025
[21]

Cascaded-mode interferometers: Spectral shape and linewidth engineering

Jinsheng Lu*, Ileana-Cristina Benea-Chelmus, Vincent Ginis, Marcus Ossiander, Federico Capasso*

Science Advances, vol. 11(12), eadt4154, 2025. PDF Harvard SEAS Phys.org Optics.org Science Daily EurekAlert! AZoOptics ElectronicsOnline Mirage News Bioengineer.org ScienMag 搜狐

We introduce a new class of integrated photonic interferometers based on sequential mode conversions, enabling arbitrary spectral shaping and linewidth engineering far beyond the limits of conventional single-mode resonators.

2023
[20]

Helicity and Polarization Gradient Optical Trapping in Evanescent Fields

Jinsheng Lu, Vincent Ginis, Soon Wei Daniel Lim, Federico Capasso*

Physical Review Letters, vol. 131, 143803, 2023. PDF 新闻报道News

We reveal that evanescent optical fields carry helicity and polarization gradients that generate novel trapping forces, enabling selective, chirality-sensitive manipulation of nanoparticles near waveguide surfaces.

[19]

Optical manipulation: from fluid to solid domains

Qiannan Jia, Wei Lyu, Wei Yan*, Weiwei Tang*, Jinsheng Lu*, Min Qiu*

Photonics Insights, vol. 2(11), R05, 2023. PDF

[18]

Polarization-Dependent Forces and Torques at Resonance in a Microfiber-Microcavity System

Jinsheng Lu, Vincent Ginis*, Cheng-Wei Qiu, Federico Capasso*

Physical Review Letters, vol. 130, 183601, 2023. PDF Featured in PhysicsFeatured in Physics Nature research highlight

We demonstrate precise control of optical forces and torques through polarization in a coupled microfiber–microcavity system, revealing a resonant mechanism for all-optical optomechanical actuation.

[17]

Resonators with tailored optical path by cascaded-mode conversions

Vincent Ginis†*, Ileana-Cristina Benea-Chelmus†, Jinsheng Lu, Marco Piccardo, Federico Capasso*

Nature Communications, vol. 14(1), 495, 2023. PDF

2021
[16]

Micro-scale opto-thermo-mechanical actuation in the dry adhesive regime

Weiwei Tang†, Wei Lyu†, Jinsheng Lu†, Fengjiang Liu, Jiyong Wang, Wei Yan*, Min Qiu*

Light: Science & Applications, vol. 10, 193, 2021. PDF

[15]

On-chip optical tweezers based on freeform optics

Shaoliang Yu†*, Jinsheng Lu†, Vincent Ginis, Simon Kheifets, Soon Wei Daniel Lim, Min Qiu, Tian Gu, Juejun Hu, Federico Capasso

Optica, vol. 8(3), 409, 2021. PDF

We realize chip-integrated optical tweezers using freeform metalenses that tightly focus light on-chip, enabling stable three-dimensional trapping and manipulation of micro-objects without bulk optics.

[14]

Plasmon-driven nanowire actuators for on-chip manipulation

Shuangyi Linghu†, Zhaoqi Gu†, Jinsheng Lu, Wei Fang, Zongyin Yang, Huakang Yu, Zhiyuan Li, Runlin Zhu, Jian Peng, Qiwen Zhan, Songlin Zhuang, Min Gu, Fuxing Gu*

Nature Communications, vol. 12(1), , 2021. PDF

2020
[13]

Research Progress on Photoacoustic Conversion of Metal Nanomaterials

Chenxi Zheng, Jinsheng Lu, Qiang Li

Laser & Optoelectronics Progress, vol. 57(13), 130002, 2020.

[12]

Solvent-Free Nanofabrication Based on Ice-Assisted Electron-Beam Lithography

Yu Hong, Ding Zhao*, Jiyong Wang, Jinsheng Lu, Guangnan Yao, Dongli Liu, Hao Luo, Qiang Li, Min Qiu*

Nano Letters, vol. 20(12), 8841--8846, 2020. PDF

[11]

Remote structuring of near-field landscapes

Vincent Ginis*, Marco Piccardo, Michele Tamagnone, Jinsheng Lu, Min Qiu, Simon Kheifets, Federico Capasso*

Science, vol. 369(6502), 436--440, 2020. PDF

We show that near-field optical distributions can be remotely programmed by tailoring the spatial mode content of far-field beams, enabling reconfigurable nanoscale photonic landscapes without physical contact.

[10]

Monolayer Conveyor for Stably Trapping and Transporting Sub‐1 nm Particles

Mohammad Danesh, Mehdi Jafary Zadeh, Tianhang Zhang, Xiaohe Zhang, Bing Gu, Jin‐Sheng Lu, Tun Cao, Zhengtong Liu, Andrew T. S. Wee, Min Qiu, Qiaoliang Bao, Stefan Maier, Cheng‐Wei Qiu*

Laser & Photonics Reviews, vol. 14(8), 2000030, 2020. PDF

2019
[9]

Constructing Metal Arch Nanobridges Utilizing a Photothermal‐Induced Nanobonding Technique

Pintu Ghosh, Jinsheng Lu, Hao Luo, Wei Wang, Ziquan Xu, Min Qiu, Qiang Li*

Advanced Electronic Materials, vol. 5(7), 1800807, 2019. PDF

[8]

Atomic switches of metallic point contacts by plasmonic heating

Weiqiang Zhang, Hongshuang Liu, Jinsheng Lu, Lifa Ni, Haitao Liu, Qiang Li, Min Qiu, Bingqian Xu*, Takhee Lee*, Zhikai Zhao, Xianghui Wang, Maoning Wang, Tao Wang, Andreas Offenhaeusser, Dirk Mayer, Wang-Taek Hwang, Dong Xiang*

Light: Science & Applications, vol. 8(1), 34, 2019. PDF

[7]

Nanoscale Lamb wave–driven motors in nonliquid environments

Jinsheng Lu, Qiang Li, Cheng-Wei Qiu, Yu Hong, Pintu Ghosh, Min Qiu*

Science Advances, vol. 5(3), eaau8271, 2019. PDF 国自然报道

We demonstrate nanoscale rotary motors driven by acoustic Lamb waves on solid substrates in air, achieving controllable rotation of micro-objects without liquid media—a key step toward dry-environment optomechanical devices.

2018
[6]

Fabrication of controllably variable sub-100 nm gaps in silver nanowires by photothermal-induced stress

Pintu Ghosh, Jinsheng Lu, Hao Luo, Ziquan Xu, Xiaoyuan Yan, Yewu Wang, Jun Lu, Min Qiu, Qiang Li*

Optics Letters, vol. 43(10), 2422--2425, 2018. PDF

[5]

Plasmonic-enhanced targeted nanohealing of metallic nanostructures

Hangbo Yang, Jinsheng Lu, Pintu Ghosh, Ziyao Chen, Wei Wang, Hui Ye, Qian Yu, Min Qiu, Qiang Li*

Applied Physics Letters, vol. 112(7), 071108, 2018. PDF

[4]

Photothermal-Induced Nanowelding of Metal–Semiconductor Heterojunction in Integrated Nanowire Units

Pintu Ghosh, Jinsheng Lu, Ziyao Chen, Hangbo Yang, Min Qiu, Qiang Li*

Advanced Electronic Materials, vol. 4(5), 1700614, 2018. PDF

2017
[3]

Light-induced reversible expansion of individual gold nanoplates

Jinsheng Lu, Yu Hong, Qiang Li, Yingxin Xu, Wei Fang, Min Qiu*

AIP Advances, vol. 7(10), 105025, 2017. PDF

[2]

Optically controllable nanobreaking of metallic nanowires

Lina Zhou, Jinsheng Lu, Hangbo Yang, Si Luo, Wei Wang, Jun Lv, Min Qiu, Qiang Li*

Applied Physics Letters, vol. 110(8), 081101, 2017. PDF

[1]

Light-Induced Pulling and Pushing by the Synergic Effect of Optical Force and Photophoretic Force

Jinsheng Lu, Hangbo Yang, Lina Zhou, Yuanqing Yang, Si Luo, Qiang Li, Min Qiu*

Physical Review Letters, vol. 118(4), 043601, 2017. PDF 编辑推荐Editors' Suggestion Featured in PhysicsFeatured in Physics 封面文章Cover Article 中国光学十大进展候选 《物理》报道

We discover that the synergy of optical radiation pressure and photophoretic force enables a single laser beam to simultaneously push and pull absorbing particles, revealing a bidirectional light-driven transport mechanism.

会议论文
Conference Papers
C7

Cascaded Mode Interferometers

Jinsheng Lu, Ileana-Cristina Benea-Chelmus, Vincent Ginis, Marcus Ossiander, Federico Capasso

CLEO: Applications and Technology 2025, pp. AA124_7, 2025.

C6

Cascaded-Mode Resonators

Vincent Ginis, Ileana-Cristina Benea-Chelmus, Jinsheng Lu, Marco Piccardo, Federico Capasso

Conference on Lasers and Electro-Optics (CLEO 2023), pp. 1--2, 2023.

C5

Mode-independent resonances in cascaded-mode resonators

Vincent Ginis, Ileana-Cristina Benea-Chelmus, Jinsheng Lu, Marco Piccardo, Federico Capasso

European Quantum Electronics Conference (EQEC 2023), pp. eh_5_2, 2023.

C4

On-chip optical tweezers based on free-form optics

Jinsheng Lu, Shaoliang Yu, Vincent Ginis, Simon Kheifets, Soon Wei Daniel Lim, Min Qiu, Tian Gu, Juejun Hu, Federico Capasso

Optical Trapping and Optical Micromanipulation XVIII, pp. 58, 2021.

C3

On-chip optical tweezers based on micro-reflectors

Jinsheng Lu, Shaoliang Yu, Vincent Ginis, Simon Kheifets, Soon Wei Daniel Lim, Min Qiu, Tian Gu, Juejun Hu, Federico Capasso

CLEO: Science and Innovations, pp. SW3B--1, 2021. PDF

C2

Gold nanosprings formed by rolled-up technique

Wenting Zhao, Pintu Ghosh, Jinsheng Lu, Ziyao Chen, Qiang Li

14th National Conference on Laser Technology and Optoelectronics (LTO 2019), pp. 1117042, 2019. PDF

C1

Laser assisted welding of layered metallic nanostructure

Hangbo Yang, Lina Zhou, Jinsheng Lu, Shuowei Dai, Min Qiu, Qiang Li

2016 15th International Conference on Optical Communications and Networks (ICOCN), pp. 1--3, 2016. PDF

发明专利
Patents
P1

Cascaded-mode resonators

Vincent Ginis, Ileana-Cristina Benea-Chelmus, Jinsheng Lu, Marco Piccardo, Federico Capasso | Patent No.: US 12,481,101 B2

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