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第十一届激光与光电子国际研讨会(LOC 2026)

第十一届激光与光电子国际研讨会(LOC 2026)
The 11th Int'l Laser and Optoelectronics Conference(LOC 2026)

时间:2026124-6

地点:中国三亚

会议官网:https://www.academicx.org/LOC/2026/
投稿邮箱:contact12@academicx.org

 

. 大会简介

第十一届激光与光电子国际研讨会(LOC 2026)将于2026124-6日在三亚举行。 激光与光电子国际研讨会是领域内享受盛名的国际学术研讨会之一,大会旨在为行业内专家和学者分享技术进步和业务经验,聚焦激光器、放大器、微/纳米光子器件,材料激光加工,太赫兹技术与应用,超快光学、光电器件及其应用,短脉冲、固态、半导体、光纤、波导光源和器件,主动光学传感和计量等研究领域的前沿研究,提供一个交流的平台。   

 

. 参会方式 

1、全文参会(参会 + 全文发表 + 报告)  

投递全文并参会,录用的文章发表在开源期刊上;  

一篇文章的注册费含一位作者的参会费用,将安排做10-15分钟的口头报告;  

2、摘要参会(参会 + 摘要 + 报告 )

投递摘要并参会,安排10-15分钟口头报告;

3、听众参会:无报告仅参会

:如因特殊情况无法到场参会,可提供海报或录制的报告视频。会后我们将发送照片,并办理发票、邀请函、参会证明、会议期刊、会议证等物资的邮寄。

 

. 文章出版

出版物:所有被会议录用的英文稿件将会发表在国际英文开源期刊的正刊上, 更多详情请与我们联系(contact12@academicx.org)

 

注:1. 初版文章必须是PDFWORD版格式,并统一通过网上投稿系统或组委会邮箱提交。终版文章必须是可编辑的WORD版格式或Latex文件包。

2. 如果您只是参会作报告,不需要发表文章,只需要将摘要提交到投稿系统。

3. 您可点击左上角Template for Manuscripts下载全文投稿模板,按照此模板准备文章。全文篇幅建议15-20页(按照模板格式,带图和参考文献),超过20页需缴纳超页费。摘要投稿需使用英文书写,无格式要求,具备标题、内容、关键词、作者信息即可,篇幅建议控制在1页以内,最长不超过2页。

4. 投稿之后5-7个工作日内您会收到审核结果,如逾期未收到邮件通知,请您尽快联系我们。

5. 可投中文稿件,文章题目、摘要,关键词需要中英双语,正文部分为中文(可联系我们索取模板文档)。参会时口头报告/海报张贴必须做英文的。

 

. 大会日程(供参考) 

2026124 - 大会签到(发指南、期刊、参会证、餐券等相关物资)

2026125 - 特邀演讲嘉宾报告

2026126 - 作者报告及海报展示

 

该会议征文涉及领域包括(但不限于):

Lasers, Amplifiers, Micro/Nano-Photonic Devices

Solid-State-, Liquid and Gas Lasers, Technology and Devices

Fiber Lasers, Cw and Pulsed; Amplification, Ultra Wideband, Mode-Locked, Nonlinear Effects

High Energy/Average Power Lasers

Micro Fabricated Devices, On-Chip Applications

Nonlinear Effects in Micro and Nano Devices

 

Laser Processing of Materials

Femtosecond Laser Processing

Laser micro- and Nanoprocessing

Laser Nanopatterning

Laser Synthesis of Nanomaterials

Laser Direct Write

Laser Assisted Fabrication of Novel Opto-electronic Devices

 

Terahertz Technologies and Applications

Ultrafast Time-Domain Systems

Direct Generation Using Terahertz Lasers

Cw Generation based on Nonlinear Optical Mixing

New Terahertz Measurement Techniques and Instrumentation

Advances in Imaging Configurations, Detector Technologies, and Terahertz Optical Components

Terahertz Optical Measurements

Applications Using Terahertz Radiation for Spectroscopy, Sensing, and Imaging

 

Ultrafast Optics, Optoelectronic Devices and Applications

Optical Phase Control in Ultrafast Laser Systems

Ultrafast Optoelectronic and Electro-optic Materials, Devices, and Systems

Ultrafast Measurement Techniques

Applications of Ultrafast Technology

Ultrafast Amplification and Schemes

 

Short-Pulse, Solid-State, Semiconductor, Fiber, Waveguide Optical Sources and Devices

Fiber-Optic Sensor and Networks

White LED and Related Technologies

Electro-optic Modulators and Related Advanced Modulation Format Technologies

Advanced Radio-Over-Fiber Devices and Related Technologies

Intelligent Optoelectronic Devices and Optical Switching

Grating-based Devices and Related Technologies

Slow And Fast Light Devices and Related Technologies

Free-space Communications Related Devices and Technologies

Systems or Devices for Optical and Digital Image Processing

 

Biophotonics and Optofluidics

Laser Medical Diagnostics and Therapeutics

Biosensing Including Spectroscopic Optical Diagnostics

Optical Coherence Tomography

Photoacoustic Techniques

Optics in Biotechnology

Lab-on-chip Devices

Microfluidically Tunable or Reconfigurable Optical and Photonic Systems

Optofluidic Assembly and Lithographic Techniques

 

Active Optical Sensing and Metrology

New Optical Devices, Instruments, and Technologies for Precision Measurements

Optical Frequency Standards; Length, Distance, and Dimensional Metrology; Lasers, Supercontinua, and Broadband Sources Frequency-Comb Generation, Control, and Applications; Carrier-Envelope Phase Control

Chemical and Biological Agent Detection and Identification

Atmospheric Monitoring, Indoor, Outdoor, Industrial, Combustion, Emissions

New: Laser Spectroscopy for Breath Analysis

Other Related Topics



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