03.08.2013 Views

Edwin Jan Klein - Universiteit Twente

Edwin Jan Klein - Universiteit Twente

Edwin Jan Klein - Universiteit Twente

SHOW MORE
SHOW LESS

You also want an ePaper? Increase the reach of your titles

YUMPU automatically turns print PDFs into web optimized ePapers that Google loves.

[82] A. Leinse, M. B. J. Diemeer, A. Rousseau and A. Driessen, “A novel high<br />

speed polymeric EO modulator based on a combination of a microring<br />

resonator and an MZI,” IEEE Photonics Technology Letters, Vol. 17, No. 10,<br />

pp. 2074-2076, October 2005.<br />

[83] S. Lee, S. M. Garner, V. Chuyanov, H. Zhang, W. H. Steier, F. Wang, L. R.<br />

Dalton, A. H. Udupa and H. R. Fetterman, “Optical Intensity Modulator Based<br />

on a Novel Electrooptic Polymer Incorporating a High µβ Chromophore,”<br />

IEEE Journal of Quantum Electronics, Vol. 36, No. 5, pp. 527-531, May<br />

2000.<br />

[84] R. Dekker, A. Driessen, T. Wahlbrink, C. Moormann, J. Niehusmann and M.<br />

Först, “Ultrafast Kerr-induced all-optical wavelength conversion in silicon<br />

waveguides using 1.55 µm femtosecond pulses,” Optics Express, Vol. 14, No.<br />

18, pp. 8336-8346, 2006.<br />

[85] Wikipedia, http://en.wikipedia.org/wiki/Liquid_crystal<br />

[86] B. Maune, R. Lawson, C. Gunn, A. Scherer and L. Dalton, “Electrically<br />

tunable ring resonators incorporating nematic liquid crystals as cladding<br />

layers,” Applied Physics Letters, Vol. 83, No. 23, pp. 4689-4691, December<br />

2003.<br />

[87] S. Wua, C.-S. Hsu and K.-F. Shyu, “High birefringence and wide nematic<br />

range bis-tolane liquid crystals,” Applied Physics Letters, Vol. 74, No. 3, pp.<br />

344-346, <strong>Jan</strong>uary 1999.<br />

[88] R. A. Soref and B. R. Bennett, “Electrooptical effects in silicon,” IEEE<br />

Journal of Quantum Electronics, Vol. 23, pp. 123–129, 1987.<br />

[89] P. D. Hewitt and G. T. Reed, “Improved Modulation Performance of a Silicon<br />

p-i-n Device by Trench Isolation,” Journal of Lightwave Technology, Vol. 19,<br />

No. 3, pp. 387-390, March 2001.<br />

[90] T. A. Ibrahim, W. Chao, Y. Kim, J. Li, J. Goldhar, P.-T. Ho and C. H. Lee,<br />

“All-optical switching in a laterally coupled microring resonator by carrier<br />

injection,” IEEE Photonics Technology Letters, Vol. 15, No. 1, pp. 36-39,<br />

2003.<br />

[91] V. R. Almeida, C. A. Barrios, R. R. Panepucci and M. Lipson, “All-optical<br />

control of light on a silicon chip,” Nature, Vol. 28, pp. 1081-1084, October<br />

2004.<br />

[92] C. Manolatou, M. Lipson, “All-Optical Silicon Modulators Based on Carrier<br />

Injection by Two-Photon Absorption,” Journal of Lightwave Technology, Vol.<br />

24, No. 3, pp. 1433-1439, March 2006.<br />

[93] F. C. Blom, D. R. van Dijk, H. J. W. M. Hoekstra, A. Driessen and T. J. A.<br />

Popma, “Experimental study of integrated-optics microcavity resonators:<br />

Towards an all-optical switching device,” Applied Physics Letters, Vol. 71,<br />

pp. 747-749, 1997.<br />

[94] J. Niehusmann, M. Först, H. Kurz, R. Dekker, T. Wahlbrink, C. Moormann.<br />

“Sub-picosecond all-optical switching via cross-phase modulation in siliconon-insulator<br />

waveguides,” submitted to IEEE Photonics Technology Letters,<br />

2006.<br />

[95] P. V. Lambeck, “ Integrated optical sensors for the chemical domain,”<br />

Measurement Science & Technology, Vol. 17, No. 8, pp. 93-116, August<br />

2006.<br />

[96] E. Krioukov, D. J. W. Klunder, A. Driessen, J. Greve and C. Otto, “Sensor<br />

based on an integrated optical microcavity,” Optics Letters, Vol. 27, No. 7, pp.<br />

512-514, 2002.<br />

208

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!