4.6 Article

Highly-efficient thermally-tuned resonant optical filters

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OPTICS EXPRESS
卷 18, 期 18, 页码 19055-19063

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OPTICAL SOC AMER
DOI: 10.1364/OE.18.019055

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  1. DARPA [HR0011-08-09-000]

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We demonstrate spectral tunability for microphotonic add-drop filters manufactured as ring resonators in a commercial 130 nm SOI CMOS technology. The filters are provisioned with integrated heaters built in CMOS for thermal tuning. Their thermal impedance has been dramatically increased by the selective removal of the SOI handler substrate under the device footprint using a bulk silicon micromachining process. An overall similar to 20x increase in the tuning efficiency has been demonstrated with a 100 mu m radius ring as compared to a pre-micromachined device. A total of 3.9 mW of applied tuning power shifts the filter resonant peak across one free spectral node of the device. The Q-factor of the resonator remains unchanged after the co-integration process and hence this device geometry proves to be fully CMOS compatible. Additionally, after the cointegration process our result of 2 pi shift with 3.9mW power is among the best tuning performances for this class of devices. Finally, we examine scaling the tuning efficiency versus device footprint to develop a different performance criterion for an easier comparison to evaluate thermal tuning. Our criterion is defined as the unit of power to shift the device resonance by a full 2 pi phase shift. (c) 2010 Optical Society of America

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