Iftiquar S M
SPMS-PAP, Nanyang Technological University, 21-Nanyang Link, 637371, Singapore.
College of information and Communications Engineering, Sunkyunkwan University, Suwon, South Korea.
J Fluoresc. 2025 May;35(5):2895-2902. doi: 10.1007/s10895-024-03718-5. Epub 2024 Apr 24.
Whispering gallery mode (WGM) resonance was created in a spherical micro drop. A gradual shift in the resonance were observed. For a 600 nm droplet radius, the blue shift were 1.5, 0.7, 3.7 nm. It was estimated that such a shift corresponds to a reduction in optical radius of the droplet by 1.3, 0.6, 3.3 nm respectively. The droplet was created from a solution of glycerol, methanol and rhodamine 6G dye, and was trapped and levitated in a modified Paul trap. The WGMs were created by optically exciting the dye material from an external 532 nm cw laser beam. A shift in the WGM was observed during a gradual increase in power of the excitation laser, and a reason for such a shift was thought to be thermal evaporation of the liquid. For a larger droplet an initial 0.1 nm thermal expansion was also estimated, preceding the volume contraction. Such an expansion was negligible for a smaller droplet. The rate of change of the blue shift depends upon initial radius of the droplet. For the smaller droplet the estimated rate of change of WGM with a change in optical radius, was 0.771. For larger droplet, this rate is lower.
在一个球形微滴中产生了回音壁模式(WGM)共振。观察到共振发生了逐渐的偏移。对于半径为600 nm的液滴,蓝移分别为1.5、0.7、3.7 nm。据估计,这种偏移分别对应液滴光学半径减小1.3、0.6、3.3 nm。该液滴由甘油、甲醇和罗丹明6G染料的溶液制成,并被捕获并悬浮在一个改进的保罗阱中。通过用外部532 nm连续激光束对染料材料进行光激发来产生WGM。在激发激光功率逐渐增加的过程中观察到WGM发生了偏移,并且认为这种偏移的一个原因是液体的热蒸发。对于较大的液滴,在体积收缩之前还估计有初始的0.1 nm热膨胀。对于较小的液滴,这种膨胀可以忽略不计。蓝移的变化率取决于液滴的初始半径。对于较小的液滴,估计WGM随光学半径变化的变化率为0.771。对于较大的液滴,这个速率较低。