4.7 Article

Femtosecond laser direct writing of compact Tm:YLF waveguide lasers

Related references

Note: Only part of the references are listed.
Article Materials Science, Multidisciplinary

Temperature dependence of the fluorescence lifetime and emission cross section of Tm:YLF in the 78-300 K range

Umit Demirbas et al.

Summary: We have investigated the spectroscopic properties of Tm:YLF material at cryogenic temperatures and found that it exhibits good amplification performance. The measurements of fluorescence lifetime and emission cross section indicate that Tm:YLF has strong and relatively broadband emission peaks even at low temperatures. Furthermore, the temperature variation of fluorescence lifetime suggests that the cross-relaxation process is effective at cryogenic temperatures.

OPTICAL MATERIALS EXPRESS (2022)

Review Optics

Integrated Photonics Based on Rare-Earth Ion-Doped Thin-Film Lithium Niobate

Yuechen Jia et al.

Summary: Rare-earth ion doped crystalline materials have diverse applications in photonics, and incorporating them into integrated photonics can enrich design capabilities. RE:LNOI photonics meets the demand for chip-integrated laser sources, optical amplifiers, and quantum memories. This article provides a timely review of the development of RE:LNOI photonics and discusses future directions in lithium-niobate integrated photonics.

LASER & PHOTONICS REVIEWS (2022)

Review Optics

Optical meta-waveguides for integrated photonics and beyond

Yuan Meng et al.

Summary: The advancing nanofabrication technologies have enabled the production of sophisticated optical structures on a photonic chip, reshaping the landscape of photonic integrated circuits with the integration of subwavelength-structured metasurfaces and metamaterials. The development of meta-structured waveguides synergizes various functional subwavelength photonic architectures with different waveguide platforms, offering new opportunities for applications such as photonic integrated circuits, biomedical sensing, and artificial intelligence.

LIGHT-SCIENCE & APPLICATIONS (2021)

Review Chemistry, Physical

Recent Progress on Two-Dimensional Materials

Cheng Chang et al.

Summary: Research on two-dimensional materials has been rapidly increasing in the past seventeen years, starting from graphene and expanding into a diverse family with unique structures and properties, making them attractive candidates for various applications. Major breakthroughs have been made in the last five years in developing synthetic methods, exploring new properties, identifying innovative applications, and pushing for commercialization in the field of 2D materials.

ACTA PHYSICO-CHIMICA SINICA (2021)

Article Optics

High-power passively mode-locked cryogenic Yb:YLF laser

Umit Demirbas et al.

OPTICS LETTERS (2020)

Article Engineering, Electrical & Electronic

Efficient Tm:LiYF4 Lasers at ∼2.3 μm: Effect of Energy-Transfer Upconversion

Pavel Loiko et al.

IEEE JOURNAL OF QUANTUM ELECTRONICS (2019)

Article Engineering, Electrical & Electronic

Optically pumped planar waveguide lasers: Part II: Gain media, laser systems, and applications

Christos Grivas

PROGRESS IN QUANTUM ELECTRONICS (2016)

Article Optics

High power Tm:YLF laser operating at 1.94 μm

Y. Ding et al.

OPTIK (2015)

Article Optics

Mid-infrared waveguide lasers in rare-earth-doped YAG

Yingying Ren et al.

OPTICS LETTERS (2012)

Article Optics

Tm:LiYF4 planar waveguide laser at 1.9 μm

Western Bolanos et al.

OPTICS LETTERS (2012)

Review Engineering, Electrical & Electronic

Thulium-doped vanadate crystals: Growth, spectroscopy and laser performance

Witold Ryba-Romanowski et al.

PROGRESS IN QUANTUM ELECTRONICS (2011)

Review Multidisciplinary Sciences

Microresonator-Based Optical Frequency Combs

T. J. Kippenberg et al.

SCIENCE (2011)

Article Optics

Femtosecond laser written stress-induced Nd:Y3Al5O12 (Nd:YAG) channel waveguide laser

J. Siebenmorgen et al.

APPLIED PHYSICS B-LASERS AND OPTICS (2009)

Article Engineering, Electrical & Electronic

2-μm lasers with fluoride crystals: Research and development

F. Cornacchia et al.

PROGRESS IN QUANTUM ELECTRONICS (2009)