In this paper we report on the design, fabrication and characterization of an integrated-optic spiral resonator for angular rate sensing applications. The spiral resonator design has been optimized through a parametric analysis and a minimum angular velocity of about 10°/h, suitable for aerospace applications, has been theoretically predicted. The resonator has been fabricated in silica-on-silicon technology and characterized. Experimental results are in good agreement with the theoretical predictions.

Innovative integrated-optic resonator for angular rate sensing: Design and experimental characterization / Ciminelli, C.; Dell'Olio, F.; Campanella, C. E.; Armenise, M. N.. - STAMPA. - 91:(2011), pp. 345-349. [10.1007/978-94-007-1324-6_54]

Innovative integrated-optic resonator for angular rate sensing: Design and experimental characterization

Ciminelli, C.;Dell'Olio, F.;Campanella, C. E.;Armenise, M. N.
2011-01-01

Abstract

In this paper we report on the design, fabrication and characterization of an integrated-optic spiral resonator for angular rate sensing applications. The spiral resonator design has been optimized through a parametric analysis and a minimum angular velocity of about 10°/h, suitable for aerospace applications, has been theoretically predicted. The resonator has been fabricated in silica-on-silicon technology and characterized. Experimental results are in good agreement with the theoretical predictions.
2011
Sensors and Microsystems : AISEM 2010 Proceedings
978-94-007-1323-9
Springer
Innovative integrated-optic resonator for angular rate sensing: Design and experimental characterization / Ciminelli, C.; Dell'Olio, F.; Campanella, C. E.; Armenise, M. N.. - STAMPA. - 91:(2011), pp. 345-349. [10.1007/978-94-007-1324-6_54]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11589/52424
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