Infrared (English Wikipedia)

Analysis of information sources in references of the Wikipedia article "Infrared" in English language version.

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  • Vatansever, Fatma; Hamblin, Michael R. (2012-01-01). "Far infrared radiation (FIR): Its biological effects and medical applications". Photonics & Lasers in Medicine. 1 (4): 255–266. doi:10.1515/plm-2012-0034. ISSN 2193-0643. PMC 3699878. PMID 23833705.
  • Sliney, David H.; Wangemann, Robert T.; Franks, James K.; Wolbarsht, Myron L. (1976). "Visual sensitivity of the eye to infrared laser radiation". Journal of the Optical Society of America. 66 (4): 339–341. Bibcode:1976JOSA...66..339S. doi:10.1364/JOSA.66.000339. PMID 1262982. The foveal sensitivity to several near-infrared laser wavelengths was measured. It was found that the eye could respond to radiation at wavelengths at least as far as 1064 nm. A continuous 1064 nm laser source appeared red, but a 1060 nm pulsed laser source appeared green, which suggests the presence of second harmonic generation in the retina.
  • Griffin, Donald R.; Hubbard, Ruth; Wald, George (1947). "The Sensitivity of the Human Eye to Infra-Red Radiation". Journal of the Optical Society of America. 37 (7): 546–553. Bibcode:1947JOSA...37..546G. doi:10.1364/JOSA.37.000546. PMID 20256359.
  • Wang, Tong; Wu, Yi; Shi, Lan; Hu, Xinhua; Chen, Min; Wu, Limin (2021). "A structural polymer for highly efficient all-day passive radiative cooling". Nature Communications. 12 (365): 365. doi:10.1038/s41467-020-20646-7. PMC 7809060. PMID 33446648. Accordingly, designing and fabricating efficient PDRC with sufficiently high solar reflectance (𝜌¯solar) (λ ~ 0.3–2.5 μm) to minimize solar heat gain and simultaneously strong LWIR thermal emittance (ε¯LWIR) to maximize radiative heat loss is highly desirable. When the incoming radiative heat from the Sun is balanced by the outgoing radiative heat emission, the temperature of the Earth can reach its steady state.
  • Jones, B.S.; Lynn, W.F.; Stone, M.O. (2001). "Thermal Modeling of Snake Infrared Reception: Evidence for Limited Detection Range". Journal of Theoretical Biology. 209 (2): 201–211. Bibcode:2001JThBi.209..201J. doi:10.1006/jtbi.2000.2256. PMID 11401462. Archived from the original on 2020-03-17. Retrieved 2019-09-06.
  • Gorbunov, V.; Fuchigami, N.; Stone, M.; Grace, M.; Tsukruk, V. V. (2002). "Biological Thermal Detection: Micromechanical and Microthermal Properties of Biological Infrared Receptors". Biomacromolecules. 3 (1): 106–115. doi:10.1021/bm015591f. PMID 11866562. S2CID 21737304.
  • Evans, W.G. (1966). "Infrared receptors in Melanophila acuminata De Geer". Nature. 202 (4928): 211. Bibcode:1964Natur.202..211E. doi:10.1038/202211a0. PMID 14156319. S2CID 2553265.
  • Campbell, Angela L.; Naik, Rajesh R.; Sowards, Laura; Stone, Morley O. (2002). "Biological infrared imaging and sensing". Micrometre. 33 (2): 211–225. doi:10.1016/S0968-4328(01)00010-5. PMID 11567889. Archived from the original on 2020-03-17. Retrieved 2019-06-13.
  • Meuthen, Denis; Rick, Ingolf P.; Thünken, Timo; Baldauf, Sebastian A. (2012). "Visual prey detection by near-infrared cues in a fish". Naturwissenschaften. 99 (12): 1063–6. Bibcode:2012NW.....99.1063M. doi:10.1007/s00114-012-0980-7. PMID 23086394. S2CID 4512517.
  • Shcherbakov, Denis; Knörzer, Alexandra; Hilbig, Reinhard; Haas, Ulrich; Blum, Martin (2012). "Near-infrared orientation of Mozambique tilapia Oreochromis mossambicus". Zoology. 115 (4): 233–238. Bibcode:2012Zool..115..233S. doi:10.1016/j.zool.2012.01.005. PMID 22770589.
  • Hargate, G (2006). "A randomised double-blind study comparing the effect of 1072-nm light against placebo for the treatment of herpes labialis". Clinical and Experimental Dermatology. 31 (5): 638–41. doi:10.1111/j.1365-2230.2006.02191.x. PMID 16780494. S2CID 26977101.
  • Desmet KD, Paz DA, Corry JJ, Eells JT, Wong-Riley MT, Henry MM, Buchmann EV, Connelly MP, Dovi JV, Liang HL, Henshel DS, Yeager RL, Millsap DS, Lim J, Gould LJ, Das R, Jett M, Hodgson BD, Margolis D, Whelan HT (May 2006). "Clinical and experimental applications of NIR-LED photobiomodulation". Photomedicine and Laser Surgery. 24 (2): 121–8. doi:10.1089/pho.2006.24.121. PMID 16706690. S2CID 22442409. Archived from the original on 2020-03-16. Retrieved 2019-06-13.

ncbi.nlm.nih.gov

  • Vatansever, Fatma; Hamblin, Michael R. (2012-01-01). "Far infrared radiation (FIR): Its biological effects and medical applications". Photonics & Lasers in Medicine. 1 (4): 255–266. doi:10.1515/plm-2012-0034. ISSN 2193-0643. PMC 3699878. PMID 23833705.
  • Wang, Tong; Wu, Yi; Shi, Lan; Hu, Xinhua; Chen, Min; Wu, Limin (2021). "A structural polymer for highly efficient all-day passive radiative cooling". Nature Communications. 12 (365): 365. doi:10.1038/s41467-020-20646-7. PMC 7809060. PMID 33446648. Accordingly, designing and fabricating efficient PDRC with sufficiently high solar reflectance (𝜌¯solar) (λ ~ 0.3–2.5 μm) to minimize solar heat gain and simultaneously strong LWIR thermal emittance (ε¯LWIR) to maximize radiative heat loss is highly desirable. When the incoming radiative heat from the Sun is balanced by the outgoing radiative heat emission, the temperature of the Earth can reach its steady state.

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  • "Infrared Light". RP Photonics Encyclopedia. RP Photonics. Archived from the original on 1 August 2021. Retrieved 20 July 2021.

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  • Vatansever, Fatma; Hamblin, Michael R. (2012-01-01). "Far infrared radiation (FIR): Its biological effects and medical applications". Photonics & Lasers in Medicine. 1 (4): 255–266. doi:10.1515/plm-2012-0034. ISSN 2193-0643. PMC 3699878. PMID 23833705.
  • Brook, P. J. (26 April 1969). "Stimulation of Ascospore Release in Venturia inaequalis by Far Red Light". Nature. 222 (5191): 390–392. Bibcode:1969Natur.222..390B. doi:10.1038/222390a0. ISSN 0028-0836. S2CID 4293713.

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