TY - JOUR
T1 - Feasibility study of Zeeman modulation spectrometrywith a hollow capillary fiber based gas cell
AU - Hangauer, Andreas
AU - Chen, Jia
AU - Strzoda, Rainer
AU - Amann, Markus Christian
PY - 2012/4/1
Y1 - 2012/4/1
N2 - For paramagnetic gases (e.g., O2, NO, NO2, OH) Zeeman modulation spectrometry is a method for spectrometric gas sensing with extraordinary selectivity. In this Letter it is combined with a hollow capillary based gas cell, where the gas is filled in long light-guiding capillary that is placed inside a toroidal coil. Over conventional Zeeman spectrometry this has the advantage of lower power consumption at long optical path length, since several loops of the hollow capillary fiber can be placed in the coil. Compared to wavelength modulation spectrometry the advantage is insensitivity to interference by multimode propagation in the fiber and absorption by other nonparamagnetic gases, which should enhance both sensor stability and sensitivity. Experimental and theoretical results are presented, showing the feasibility of the approach.
AB - For paramagnetic gases (e.g., O2, NO, NO2, OH) Zeeman modulation spectrometry is a method for spectrometric gas sensing with extraordinary selectivity. In this Letter it is combined with a hollow capillary based gas cell, where the gas is filled in long light-guiding capillary that is placed inside a toroidal coil. Over conventional Zeeman spectrometry this has the advantage of lower power consumption at long optical path length, since several loops of the hollow capillary fiber can be placed in the coil. Compared to wavelength modulation spectrometry the advantage is insensitivity to interference by multimode propagation in the fiber and absorption by other nonparamagnetic gases, which should enhance both sensor stability and sensitivity. Experimental and theoretical results are presented, showing the feasibility of the approach.
UR - http://www.scopus.com/inward/record.url?scp=84859197771&partnerID=8YFLogxK
U2 - 10.1364/OL.37.001265
DO - 10.1364/OL.37.001265
M3 - Article
AN - SCOPUS:84859197771
SN - 0146-9592
VL - 37
SP - 1265
EP - 1267
JO - Optics Letters
JF - Optics Letters
IS - 7
ER -