Yudin, N.; Antipov, O.; Balabanov, S.; Eranov, I.; Getmanovskiy, Y.; Slyunko, E.
Effects of the Processing Technology of CVD-ZnSe, Cr2+:ZnSe, and Fe2+:ZnSe Polycrystalline Optical Elements on the Damage Threshold Induced by a Repetitively Pulsed Laser at 2.1 µm. Ceramics 2022, 5, 459-471.
https://doi.org/10.3390/ceramics5030035
AMA Style
Yudin N, Antipov O, Balabanov S, Eranov I, Getmanovskiy Y, Slyunko E.
Effects of the Processing Technology of CVD-ZnSe, Cr2+:ZnSe, and Fe2+:ZnSe Polycrystalline Optical Elements on the Damage Threshold Induced by a Repetitively Pulsed Laser at 2.1 µm. Ceramics. 2022; 5(3):459-471.
https://doi.org/10.3390/ceramics5030035
Chicago/Turabian Style
Yudin, Nikolay, Oleg Antipov, Stanislav Balabanov, Ilya Eranov, Yuri Getmanovskiy, and Elena Slyunko.
2022. "Effects of the Processing Technology of CVD-ZnSe, Cr2+:ZnSe, and Fe2+:ZnSe Polycrystalline Optical Elements on the Damage Threshold Induced by a Repetitively Pulsed Laser at 2.1 µm" Ceramics 5, no. 3: 459-471.
https://doi.org/10.3390/ceramics5030035
APA Style
Yudin, N., Antipov, O., Balabanov, S., Eranov, I., Getmanovskiy, Y., & Slyunko, E.
(2022). Effects of the Processing Technology of CVD-ZnSe, Cr2+:ZnSe, and Fe2+:ZnSe Polycrystalline Optical Elements on the Damage Threshold Induced by a Repetitively Pulsed Laser at 2.1 µm. Ceramics, 5(3), 459-471.
https://doi.org/10.3390/ceramics5030035