Pringsheim, P. Zwei Bemerkungen über den Unterschied von Lumineszenz- und Temperaturstrahlung. Z. Physik 57, 739–746 (1929).
Epstein, R. I., Buchwald, M. I., Edwards, B. C., Gosnell, T. R. & Mungan, C. E. Observation of laser-induced fluorescent cooling of a solid. Nature 377, 500–503 (1995).
Seletskiy, D. V. et al. Laser cooling of solids to cryogenic temperatures. Nat. Photon. 4, 161–164 (2010).
Zhang, J., Li, D., Chen, R. & Xiong, Q. Laser cooling of a semiconductor by 40 kelvin. Nature 493, 504–508 (2013).
Ha, S.-T., Shen, C., Zhang, J. & Xiong, Q. Laser cooling of organic-inorganic lead halide perovskites. Nat. Photon. 10, 115–121 (2016).
Melgaard, S. D., Albrecht, A. R., Hehlen, M. P. & Sheik-Bahae, M. Solid-state optical refrigeration to sub-100 Kelvin regime. Sci. Rep. 6, 20380 (2016).
Mobini, E. et al. Laser cooling of ytterbium-doped silica glass. Commun. Phys. 3, 134 (2020).
Topper, B. et al. Laser cooling ytterbium doped silica by 67 K from ambient temperature. Opt. Express 32, 3660–3672 (2024).
Roder, P. B., Smith, B. E., Zhou, X., Crane, M. J. & Pauzauskie, P. J. Laser refrigeration of hydrothermal nanocrystals in physiological media. Proc. Natl Acad. Sci. USA 112, 15024–15029 (2015).
Zhang, Q. et al. Phonon-assisted anti-Stokes lasing in ZnTe nanoribbons. Adv. Mater. 28, 276–283 (2015).
... continue reading