Abstract
A novel multichannel asynchronous time-resolving system with 16 time-resolving channels has been developed for conventional FT-IR spectrophotometers. The system enables measurement at 16 time delays simultaneously. This reduces the measuring time substantially and decreases possible damage of a sample by the stimulus. Moreover, simultaneous time resolving by the multichannel system improves the reliability of the data. As a performance test of the system, application to the study of reorientation dynamics in a ferroelectric liquid crystal is reported.
Keywords
Get full access to this article
View all access options for this article.
References
1.
Masutani
K.
Sugisawa
H.
Yokota
A.
Furukawa
Y.
and
Tasumi
M
, Appl. Spectrosc. 46 , 560 (1992 ).
2.
Masutani
K.
Yokota
A.
Furukawa
Y.
Tasumi
M.
and
Yoshizawa
A
, Appl. Spectrosc. 47 , 1370 (1993 ).
3.
Czarnecki
M. A.
Katayama
N.
Satoh
Y. Ozaki. M.
Yoshio
K.
Watanabe
T.
and
Yanagi
T
, Appl. Spectrosc. 47 , 1382 (1993 ).
4.
Czarnecki
M. A.
Katayama
N.
Satoh
M.
Watanabe
T.
and
Ozaki
Y
, J. Phys. Chem. 99 , 14101 (1995 ).
5.
Kim
K. H.
Ishikawa
K.
Takezoe
H.
and
Fukuda
A
, Phys. Rev. E. 51 , 2166 (1995 ).
6.
Jin
B.
Ling
Z.
Takahashi
Y.
Ishikawa
K.
Takezoe
H.
Fukuda
A.
Kakimoto
M.
and
Kitazume
T
, Phys. Rev. E. 53 , R4295 (1996 ).
7.
Katayama
N.
Czarnecki
M. A.
Satoh
M.
Watanabe
T.
and
Ozaki
Y
, Appl. Spectrosc. 51 , 487 (1997 ).
8.
Verma
L.
Zhao
B.
Jiang
S. M.
Shen
J. C.
and
Ozaki
Y
, Phys. Rev. E. 56 , 3053 (1997 ).
