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Two‐photon polymerization lithography for optics and photonics: fundamentals, materials, technologies, and applications
The rapid development of additive manufacturing has fueled a revolution in various research
fields and industrial applications. Among the myriad of advanced 3D printing techniques …
fields and industrial applications. Among the myriad of advanced 3D printing techniques …
Adaptive optics in laser processing
Adaptive optics are becoming a valuable tool for laser processing, providing enhanced
functionality and flexibility for a range of systems. Using a single adaptive element, it is …
functionality and flexibility for a range of systems. Using a single adaptive element, it is …
Femtosecond laser-inscribed optical waveguides in dielectric crystals: a concise review and recent advances
Femtosecond laser inscription or writing has been recognized as a powerful technique to
engineer various materials toward a number of applications. By efficient modification of …
engineer various materials toward a number of applications. By efficient modification of …
Photonic circuits written by femtosecond laser in glass: improved fabrication and recent progress in photonic devices
Integrated photonics is attracting considerable attention and has found many applications in
both classical and quantum optics, fulfilling the requirements for the ever-growing complexity …
both classical and quantum optics, fulfilling the requirements for the ever-growing complexity …
[HTML][HTML] Femtosecond laser three-dimensional micro-and nanofabrication
K Sugioka, Y Cheng - Applied physics reviews, 2014 - pubs.aip.org
The rapid development of the femtosecond laser has revolutionized materials processing
due to its unique characteristics of ultrashort pulse width and extremely high peak intensity …
due to its unique characteristics of ultrashort pulse width and extremely high peak intensity …
Progress in ultrafast laser processing and future prospects
K Sugioka - Nanophotonics, 2017 - degruyter.com
The unique characteristics of ultrafast lasers have rapidly revolutionized materials
processing after their first demonstration in 1987. The ultrashort pulse width of the laser …
processing after their first demonstration in 1987. The ultrashort pulse width of the laser …
Three-dimensional femtosecond laser processing for lab-on-a-chip applications
The extremely high peak intensity associated with ultrashort pulse width of femtosecond
laser allows us to induce nonlinear interaction such as multiphoton absorption and tunneling …
laser allows us to induce nonlinear interaction such as multiphoton absorption and tunneling …
Laser written circuits for quantum photonics
The femtosecond laser direct‐writing (FLDW) of waveguide circuits in glasses has seen
interest from a number of fields over the previous 20 years. It has evolved from a curiosity to …
interest from a number of fields over the previous 20 years. It has evolved from a curiosity to …
Femtosecond laser microstructuring: an enabling tool for optofluidic lab‐on‐chips
This paper provides an overview of the rather new field concerning the applications of
femtosecond laser microstructuring of glass to optofluidics. Femtosecond lasers have …
femtosecond laser microstructuring of glass to optofluidics. Femtosecond lasers have …
Ultrafast processes for bulk modification of transparent materials
When a femtosecond laser pulse is focused inside a transparent material, the optical
intensity in the focal volume can become high enough to induce permanent structural …
intensity in the focal volume can become high enough to induce permanent structural …