Ghaleb Khalil Abbas, Georges Joseph
Laboratoire des Sciences Analytiques, Bât. CPE-308D, Domaine Scientifique de la Doua, Université Claude Bernard, 69622 Villeurbanne Cedex, France.
Appl Spectrosc. 2004 Sep;58(9):1116-21. doi: 10.1366/0003702041959424.
Crossed-beam thermal lens spectrometry is especially designed for the detection of very small samples in capillary tubes and more generally in microfluidic devices. In this work, the effect of the size of the excitation beam with respect to the size of the sample microchannel has been investigated. Although the signal is inversely proportional to the size of the excitation waist into the sample, the use of large waists may provide greater sensitivities when short-pulse excitation lasers are used and allows easier optimization of the optical design. On the contrary, the use of small beam waists reduces the edge effects that can arise depending on the nature and thickness of the walls of the sample holder. Moreover, small beams provide better spatial resolution and have allowed the measurement of flow velocities as low as 1 mm s(-1).
交叉光束热透镜光谱法专门设计用于检测毛细管中以及更普遍地在微流控装置中的非常小的样品。在这项工作中,研究了激发光束尺寸相对于样品微通道尺寸的影响。尽管信号与进入样品的激发腰斑尺寸成反比,但当使用短脉冲激发激光器时,使用大腰斑可能会提供更高的灵敏度,并且便于光学设计的优化。相反,使用小光束腰斑可减少因样品池壁的性质和厚度而可能产生的边缘效应。此外,小光束提供更好的空间分辨率,并能够测量低至1毫米/秒的流速。