Title :
A laser probe based on a sagnac interferometer with fast mechanical scan for RF surface and bulk acoustic wave devices
Author :
Hashimoto, Ken-Ya ; Kashiwa, Keiskue ; Wu, Nan ; Omori, Tatsuya ; Yamaguchi, Masatsune ; Takano, Osamu ; Meguro, Sakae ; Akahane, Koichi
Author_Institution :
Grad. Sch. of Eng., Chiba Univ., Chiba, Japan
fDate :
1/1/2011 12:00:00 AM
Abstract :
This paper describes the development of a phase-sensitive laser probe with fast mechanical scan for RF surface and bulk acoustic wave (SAW/BAW) devices. The Sagnac interferometer composed of micro-optic elements was introduced for the selective detection of RF vertical motion associated with RF SAW/BAW propagation and vibration. A high-pass characteristic of the interferometer makes the measurement very insensitive to low-frequency vibration. This feature allows us to apply the fast mechanical scan to the interferometric measurement without badly sacrificing its SNR and spatial resolution. The system was applied to the visualization of a field pattern on the vibrating surface of an RF BAW resonator operating in the 2 GHz range. The field pattern was obtained in 17 min as a 2-D image (500 × 750 pixel with 0.4 μm resolution and SNR of 40 dB). The system was also applied to the characterization of an RF SAW resonator operating in the 1 GHz range, and the applicability of the system was demonstrated.
Keywords :
Sagnac interferometers; acoustic wave interferometers; acoustic wave propagation; bulk acoustic wave devices; image resolution; laser beam applications; micro-optics; probes; radiofrequency measurement; surface acoustic wave resonators; vibration measurement; RF BAW resonator; RF SAW propagation; RF bulk acoustic wave device; RF surface acoustic wave device; RF vertical motion detection; Sagnac interferometer; field pattern visualization; frequency 2 GHz; interferometric measurement; low-frequency vibration; mechanical scan; microoptic element; phase-sensitive laser probe; spatial resolution; Acoustic beams; Laser beams; Measurement by laser beam; Optical surface waves; Sagnac interferometers; Surface acoustic wave devices; Vibrations;
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
DOI :
10.1109/TUFFC.2011.1785