DocumentCode
1029697
Title
Bi-substituted rare-earth iron garnet composite film with temperature independent Faraday rotation for optical isolators
Author
Matsuda, K. ; Minemoto, H. ; Kamada, O. ; Ishizuka, S.
Author_Institution
Matsushita Electric Industrial Co. Ltd., Moriguchi, Osaka, Japan
Volume
23
Issue
5
fYear
1987
fDate
9/1/1987 12:00:00 AM
Firstpage
3479
Lastpage
3481
Abstract
(BiLuGd)IG/(BiGd)(FeGa)G composite films of which the temperature derivatives of Faraday rotation angle at 45 degree (
) are nearly zero, were grown by a two-step liquid phase epitaxial (LPE) method. The relative intensity noise (RIN) of the 1.3 μm laser diode (LD) with an optical isolator using the β=0.00 deg/°C garnet composite film were measured in comparison with an isolator using the garnet crystal with β of 0.05 deg/ °C. The relation between the RIN and the feedback light power and the relation between the RIN and β value were clarified. It was found that the increase of the RIN by periodic noise caused by feedback light to the LD from the fiber-far-end was observed when the feedback light power increases more than -62dB. In the practical temperature range of
C garnet composite films with β=0.00 deg/°C are required in order to prevent the periodic noise.
) are nearly zero, were grown by a two-step liquid phase epitaxial (LPE) method. The relative intensity noise (RIN) of the 1.3 μm laser diode (LD) with an optical isolator using the β=0.00 deg/°C garnet composite film were measured in comparison with an isolator using the garnet crystal with β of 0.05 deg/ °C. The relation between the RIN and the feedback light power and the relation between the RIN and β value were clarified. It was found that the increase of the RIN by periodic noise caused by feedback light to the LD from the fiber-far-end was observed when the feedback light power increases more than -62dB. In the practical temperature range of
C garnet composite films with β=0.00 deg/°C are required in order to prevent the periodic noise.Keywords
Magnetooptic materials/devices; Optical isolators; Diode lasers; Garnet films; Iron; Isolators; Laser feedback; Noise measurement; Optical feedback; Optical films; Optical noise; Temperature;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.1987.1065520
Filename
1065520
Link To Document