Ofner Johannes, Krüger Heinz-Ulrich, Zetzsch Cornelius
Atmospheric Chemistry Research Laboratory, University of Bayreuth, Dr. Hans-Frisch-Strasse 1-3, D-95448 Bayreuth, Germany.
Appl Opt. 2010 Sep 10;49(26):5001-4. doi: 10.1364/AO.49.005001.
We constructed a circular multireflection (CMR) cell, allowing multireflection around the center of the cell. This is caused by a skewed adjustment of the entering beam (equivalent to a simple parallel shift/offset), avoiding the center of the cell, thus leading to multiple reflections. The experimental setup with a cell with an inner diameter of 6 cm showed up to 17.5 beam passes on polished aluminum and attained path lengths up to 105 cm, demonstrated by Fourier transform infrared measurements of CO(2) gas between 2283 and 2400 cm(-1). The circular concept, i.e., the centering of the reflections, is useful for absorption spectroscopy on trace gases and aerosols. The optical alignment of the cell can completely be performed from outside the experimental setup, e.g., an aerosol flow reactor or a vacuum system. The variation of the path length is easily possible by adjusting the position of the cell with respect to the entering light beam.
我们构建了一个圆形多反射(CMR)池,使光束能够在池中心周围进行多次反射。这是由于入射光束的倾斜调整(相当于简单的平行位移/偏移)造成的,从而避开了池中心,进而导致多次反射。内径为6厘米的池的实验装置在抛光铝上显示出多达17.5次光束通过,通过对2283至2400厘米⁻¹之间的CO₂气体进行傅里叶变换红外测量,证明光程长度可达105厘米。这种圆形概念,即反射的居中,对于痕量气体和气溶胶的吸收光谱分析很有用。池的光学对准完全可以在实验装置外部进行,例如在气溶胶流动反应器或真空系统中。通过调整池相对于入射光束的位置,可以轻松实现光程长度的变化。