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Electro-optic directed AND/NAND logic circuit based on two parallel microring resonatorsYonghui Tian, Lei Zhang, and Lin Yang »View Author Affiliations
Yonghui Tian,
Lei Zhang,
and Lin Yang*
State Key Laboratory on Integrated Optoelectronics and Optoelectronic System Laboratory, Institute of Semiconductors, Chinese Academy of Sciences, P. O. Box 912, Beijing 100083, China *Corresponding author: oip@semi.ac.cn |
Optics Express, Vol. 20, Issue 15, pp. 16794-16800 (2012)
http://dx.doi.org/10.1364/OE.20.016794
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Abstract
We report an electro-optic directed logic circuit which can implement the AND/NAND operations based on two parallel microring resonators. PIN diodes are embedded around microring resonators to achieve the carrier-injection modulation, two electrical pulse sequences regarded as the two operands of the operations are employed to modulate two microring resonators through the plasma dispersion effect. The operation results are obtained at the optical output ports in the form of light. Microheaters fabricated on the top of the microring resonators are employed to compensate two microring resonators resonance mismatch caused by the fabrication errors through the thermo-optic effect. The AND/NAND operations with the operation speed of 100Mbps are demonstrated simultaneously.
© 2012 OSA
OCIS Codes
(130.0130) Integrated optics : Integrated optics
(130.3750) Integrated optics : Optical logic devices
(230.5750) Optical devices : Resonators
(250.5300) Optoelectronics : Photonic integrated circuits
(130.4815) Integrated optics : Optical switching devices
ToC Category:
Integrated Optics
History
Original Manuscript: May 22, 2012
Revised Manuscript: July 3, 2012
Manuscript Accepted: July 4, 2012
Published: July 10, 2012
Citation
Yonghui Tian, Lei Zhang, and Lin Yang, "Electro-optic directed AND/NAND logic circuit based on two parallel microring resonators," Opt. Express 20, 16794-16800 (2012)
http://www.opticsinfobase.org/oe/abstract.cfm?URI=oe-20-15-16794
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References
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- A. Khilo, S. J. Spector, M. E. Grein, A. H. Nejadmalayeri, C. W. Holzwarth, M. Y. Sander, M. S. Dahlem, M. Y. Peng, M. W. Geis, N. A. DiLello, J. U. Yoon, A. Motamedi, J. S. Orcutt, J. P. Wang, C. M. Sorace-Agaskar, M. A. Popović, J. Sun, G. R. Zhou, H. Byun, J. Chen, J. L. Hoyt, H. I. Smith, R. J. Ram, M. Perrott, T. M. Lyszczarz, E. P. Ippen, and F. X. Kärtner, “Photonic ADC: overcoming the bottleneck of electronic jitter,” Opt. Express20(4), 4454–4469 (2012). [CrossRef] [PubMed]
- S. J. Spector, M. W. Geis, G. R. Zhou, M. E. Grein, F. Gan, M. A. Popovic, J. U. Yoon, D. M. Lennon, E. P. Ippen, F. Z. Kärtner, and T. M. Lyszczarz, “CMOS-compatible dual-output silicon modulator for analog signal processing,” Opt. Express16(15), 11027–11031 (2008). [CrossRef] [PubMed]
- M. Hochberg, T. Baehr-Jones, G. Wang, M. Shearn, K. Harvard, J. Luo, B. Chen, Z. Shi, R. Lawson, P. Sullivan, A. K. Jen, L. Dalton, and A. Scherer, “Terahertz all-optical modulation in a silicon-polymer hybrid system,” Nat. Mater.5(9), 703–709 (2006). [CrossRef] [PubMed]
- I. Artundo, L. Desmet, W. Heirman, C. Debaes, J. Dambre, J. Van Campenhout, and H. Thienpont, “Selective optical broadcast component for reconfigurable multiprocessor interconnects,” IEEE J. Sel. Top. Quantum Electron.12(4), 828–837 (2006). [CrossRef]
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