Miyazaki Jun, Tsurui Hiromichi, Kawasumi Koshi, Kobayashi Takayoshi
Opt Lett. 2015 Feb 15;40(4):479-82. doi: 10.1364/OL.40.000479.
A novel detection method is proposed for highly sensitive photothermal microscopic imaging. This method is based on the characteristics of an angular-dependent photothermal signal; it improves signal intensity by up to two times and rejects the intensity noise of the probe beam. The subdiffraction resolution photothermal imaging of mouse skin melanoma is demonstrated using a laser diode-based photothermal microscopy system to evaluate this method. We confirm that the signal intensity is enhanced 1.7 times compared with the conventional detection method. Moreover, the intensity noise of the laser diode used for the probe beam is effectively reduced by approximately 31 dB, even for a sample with non-uniformity of the refractive index and stationary absorption. This method is implemented by means of a commonly used balanced detector and is thus potentially useful for high-speed imaging.
提出了一种用于高灵敏度光热显微成像的新型检测方法。该方法基于与角度相关的光热信号特性;它将信号强度提高了两倍,并抑制了探测光束的强度噪声。使用基于激光二极管的光热显微镜系统对小鼠皮肤黑色素瘤进行亚衍射分辨率光热成像,以评估该方法。我们证实,与传统检测方法相比,信号强度提高了1.7倍。此外,即使对于具有折射率不均匀性和静态吸收的样品,用于探测光束的激光二极管的强度噪声也能有效降低约31 dB。该方法通过常用的平衡探测器实现,因此对于高速成像具有潜在的应用价值。