Chang, R.; Wang, T.; Wang, Y.; Wei, Y.; Yang, Y.; Sun, R.; Yan, Y.; Wang, Z.; He, J.; Wang, J.
FPGA-Based 509 nm Laser Frequency Stabilization to Cesium Atomic Transition: Modulation-Free Rydberg Two-Color Polarization Spectroscopy (TCPS) Versus Frequency-Modulated Rydberg–EIT Spectroscopy. Photonics 2026, 13, 180.
https://doi.org/10.3390/photonics13020180
AMA Style
Chang R, Wang T, Wang Y, Wei Y, Yang Y, Sun R, Yan Y, Wang Z, He J, Wang J.
FPGA-Based 509 nm Laser Frequency Stabilization to Cesium Atomic Transition: Modulation-Free Rydberg Two-Color Polarization Spectroscopy (TCPS) Versus Frequency-Modulated Rydberg–EIT Spectroscopy. Photonics. 2026; 13(2):180.
https://doi.org/10.3390/photonics13020180
Chicago/Turabian Style
Chang, Rui, Tao Wang, Yuewei Wang, Yirong Wei, Yuhui Yang, Rui Sun, Yuzhi Yan, Ziwen Wang, Jun He, and Junmin Wang.
2026. "FPGA-Based 509 nm Laser Frequency Stabilization to Cesium Atomic Transition: Modulation-Free Rydberg Two-Color Polarization Spectroscopy (TCPS) Versus Frequency-Modulated Rydberg–EIT Spectroscopy" Photonics 13, no. 2: 180.
https://doi.org/10.3390/photonics13020180
APA Style
Chang, R., Wang, T., Wang, Y., Wei, Y., Yang, Y., Sun, R., Yan, Y., Wang, Z., He, J., & Wang, J.
(2026). FPGA-Based 509 nm Laser Frequency Stabilization to Cesium Atomic Transition: Modulation-Free Rydberg Two-Color Polarization Spectroscopy (TCPS) Versus Frequency-Modulated Rydberg–EIT Spectroscopy. Photonics, 13(2), 180.
https://doi.org/10.3390/photonics13020180