Call for Papers

Call for Papers


The ALMOS conference series centers on advanced laser manufacturing, optical sensing, and smart materials, covering advanced laser sources and beam manipulation, laser precision manufacturing and extreme processing, optical sensing and photonic integration, responsive optical materials and metamaterials, as well as laser digital twins and smart production. This conference intends to bring together researchers, scholars, and industry specialists engaged in fundamental and applied science, engineering, and technology fields to exchange their latest research outcomes.

 

We sincerely invite experts, scholars, and industry practitioners from universities and research institutions worldwide to join our academic exchanges.

 

Topics of interest include, but are not limited to:

 

 

Track 1: Advanced Laser Sources and Beam Manipulation Track 2: Laser Precision Manufacturing and Extreme Processing
Ultrafast lasers and pulse shaping
High-power fiber/solid-state lasers and coherent combining
Spatial light modulation and beam shaping
Narrow-linewidth, tunable, mid-IR, and deep-UV lasers
Cavity design and novel gain media
Thin-disk, slab, and novel laser architectures
Optical frequency combs and frequency standards
Ultrafast laser micro/nano machining and lithography
Laser additive manufacturing (LPBF/DED) and multi-material printing
Laser welding, cutting, drilling, and surface texturing
Laser shock peening and cleaning
Laser cladding, remanufacturing, and surface modification
Laser quenching and alloying
Parallel multi-beam and cross-scale manufacturing
Laser-assisted machining and polishing
Laser processing in extreme environments (underwater, vacuum, high-pressure)
Laser-matter interaction mechanisms and multi-physics simulation
Laser processing of semiconductor and optoelectronic devices
Laser micro/nano manufacturing for displays and flexible electronics
Track 3: Optical Sensing and Photonic Integration Track 4: Responsive Optical Materials and Metamaterials
Distributed optical fiber sensing and FBG arrays
Metasurface and plasmonic optical sensors
Optical MEMS/NEMS and on-chip integrated sensing
Microwave photonic sensing and optical metrology
Intelligent signal demodulation and multi-sensor fusion
Fiber sensing networks and interrogation techniques
Quantum-enhanced sensing and quantum precision measurement
Optical microscopic imaging and biomedical sensing
Optical biochemical sensing and point-of-care testing
Flexible and wearable optical sensing and devices
Photoresponsive smart materials (shape/color/phase change)
Metamaterials and functional metasurface devices
Optical properties of 2D materials (graphene, TMDs, black phosphorus)
Photonic crystals, optical coatings, and energy conversion materials
Ultrafast dynamics and laser-induced damage mechanisms
Nonlinear optical materials and devices
Metasurface imaging and wavefront shaping
Flexible photonic materials and devices
Topological photonics and topological optical materials
Track 5: Laser Digital Twins and Smart Production
Digital twins and multi-physics simulation in laser processing
In-situ monitoring (machine vision, OCT) and closed-loop control
Big data analytics and process self-optimization in laser manufacturing
Laser/vision-guided industrial robotics systems
Green manufacturing and energy consumption modeling
Digital-twin-driven production line collaboration
AI-driven quality inspection and defect recognition