Kim et al., 2022 - Google Patents
Parallel Laser Printing of a thermal emission Pattern in a phase‐change thin film Cavity for Infrared Camouflage and securityKim et al., 2022
- Document ID
- 12040198320247688028
- Author
- Kim Y
- Kim C
- Lee M
- Publication year
- Publication venue
- Laser & Photonics Reviews
External Links
Snippet
Engineering the thermal emission of a material in the long‐wavelength infrared (IR) range is applicable to a wide variety of fields, including IR‐adaptive camouflage, information encryption, radiative cooling, energy‐saving windows, and personal thermal management …
- 238000007648 laser printing 0 title abstract description 13
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Kim et al. | Parallel Laser Printing of a thermal emission Pattern in a phase‐change thin film Cavity for Infrared Camouflage and security | |
Kim et al. | Laser‐induced tuning and spatial control of the emissivity of phase‐changing Ge2Sb2Te5 emitter for thermal camouflage | |
Temple et al. | Carbon dioxide laser polishing of fused silica surfaces for increased laser-damage resistance at 1064 nm | |
CN103764338B (en) | A kind of single-pulse laser ablation of the metal film on membrane for polymer | |
Kang et al. | Ultralow dispersion multicomponent thin‐film chalcogenide glass for broadband gradient‐index optics | |
Jiang et al. | Subwavelength ripples adjustment based on electron dynamics control by using shaped ultrafast laser pulse trains | |
WO2001044879A1 (en) | Production method and device for hologram | |
Kim et al. | Laser‐Printed Emissive Metasurface as an Anticounterfeiting Platform | |
Kozyukhin et al. | Laser-induced modification and formation of periodic surface structures (ripples) of amorphous GST225 phase change materials | |
Baset et al. | Femtosecond laser induced surface swelling in poly-methyl methacrylate | |
Conrads et al. | Reconfigurable and polarization‐dependent grating absorber for large‐area emissivity control based on the plasmonic phase‐change material In3SbTe2 | |
Bakan et al. | Invisible thin‐film patterns with strong infrared emission as an optical security feature | |
Kozyukhin et al. | Specific Features of Formation of Laser‐Induced Periodic Surface Structures on Ge2Sb2Te5 Amorphous Thin Films under Illumination by Femtosecond Laser Pulses | |
Kang et al. | Highly Flexible Infrared Emitter with Spatially Controlled Emissivity for Optical Security | |
Veiko et al. | Thermochemical writing with high spatial resolution on Ti films utilising picosecond laser | |
Müller‐Meskamp et al. | Transparent Conductive Metal Thin‐Film Electrodes Structured by Direct Laser Interference Patterning | |
Aleali et al. | Optical limiting response of Ag2S nanoparticles synthesized by laser ablation of silver target in DMSO | |
US7049033B2 (en) | EUV lithography reticles fabricated without the use of a patterned absorber | |
Julian et al. | Fabrication of photon sieves by laser ablation and optical properties | |
Grisham et al. | Damage to extreme-ultraviolet Sc/Si multilayer mirrors exposed to intense 46.9-nm laser pulses | |
Kang et al. | Laser Dynamic Control of the Thermal Emissivity of a Planar Cavity Structure Based on a Phase-Change Material | |
Zhu et al. | Ultrafast Laser‐Induced Plasmonic Modulation of Optical Properties of Dielectrics at High Resolution | |
Siozios et al. | Sub-surface laser nanostructuring in stratified metal/dielectric media: a versatile platform towards flexible, durable and large-scale plasmonic writing | |
Halary-Wagner et al. | Titanium dioxide thin-film deposition on polymer substrate by light induced chemical vapor deposition | |
Kozyukhin et al. | Laser-induced modification of amorphous GST225 phase change materials |