We propose an all-laser processing approach allowing controlled growth of organic–inorganic superlattice structures of rare-earth ion doped tellurium-oxide-based glass and optically transparent polydimethyl siloxane (PDMS) polymer; the purpose of which is to illustrate the structural and thermal compatibility of chemically dissimilar materials at the nanometer scale. Superlattice films with interlayer thicknesses as low as 2 nm were grown using pulsed laser deposition (PLD) at low temperatures (100 °C). Planar waveguides were successfully patterned by femtosecond-laser micro-machining for light propagation and efficient Er3+-ion amplified spontaneous emission (ASE). The proposed approach to achieve polymer–glass integration will allow the f...
In the last years polymer photonics experienced a tremendous boost in research efforts, targeting fo...
The use of laser light to modify the material's surface or bulk as well as to induce changes in the ...
Organic polymer materials are widely credited with extreme versatility for thin film device processi...
We propose an all-laser processing approach allowing controlled growth of organic-inorganic superlat...
Over the last 25 years has seen an unprecedented increase in the growth of phonic components based o...
Glass and polymer interstacked superlattice like nanolayers were fabricated by nanosecond-pulsed las...
Over the last 25 years has seen an unprecedented increase in the growth of phonic components based o...
Siloxane Polymer exhibits low loss in the 800-1500 nm range which varies between 0.01 and 0.66 dB cm...
Conferencia plenaria: -- Juarez, Chihuahua, México, September 25-29, 2017. -- https://www.smctsm.org...
International School on Quantum Electronics "Laser Physics and Applications", 21-24 September 2020 a...
The current demand for fabricating optical and photonic devices displaying high performance, using l...
Organic polymer materials are widely credited with extreme versatility for thin film device processi...
In this report we present micro/nanostructuring of novel metal isopropoxides-silica containing hybri...
Over the last decade, the ultrafast laser has emerged as a powerful tool to shape three-dimensional ...
Organic polymer materials are widely credited with extreme versatility for thin film device processi...
In the last years polymer photonics experienced a tremendous boost in research efforts, targeting fo...
The use of laser light to modify the material's surface or bulk as well as to induce changes in the ...
Organic polymer materials are widely credited with extreme versatility for thin film device processi...
We propose an all-laser processing approach allowing controlled growth of organic-inorganic superlat...
Over the last 25 years has seen an unprecedented increase in the growth of phonic components based o...
Glass and polymer interstacked superlattice like nanolayers were fabricated by nanosecond-pulsed las...
Over the last 25 years has seen an unprecedented increase in the growth of phonic components based o...
Siloxane Polymer exhibits low loss in the 800-1500 nm range which varies between 0.01 and 0.66 dB cm...
Conferencia plenaria: -- Juarez, Chihuahua, México, September 25-29, 2017. -- https://www.smctsm.org...
International School on Quantum Electronics "Laser Physics and Applications", 21-24 September 2020 a...
The current demand for fabricating optical and photonic devices displaying high performance, using l...
Organic polymer materials are widely credited with extreme versatility for thin film device processi...
In this report we present micro/nanostructuring of novel metal isopropoxides-silica containing hybri...
Over the last decade, the ultrafast laser has emerged as a powerful tool to shape three-dimensional ...
Organic polymer materials are widely credited with extreme versatility for thin film device processi...
In the last years polymer photonics experienced a tremendous boost in research efforts, targeting fo...
The use of laser light to modify the material's surface or bulk as well as to induce changes in the ...
Organic polymer materials are widely credited with extreme versatility for thin film device processi...