Peter Rakich

Affiliations: 
Physics Yale University, New Haven, CT 
Area:
experimental nonlinear optics and spectroscopy
Website:
http://appliedphysics.yale.edu/peter-t-rakich
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"Peter Rakich"
Bio:

Rakich, Peter Thomas, Optical studies of photonic crystals and high index-contrast microphotonic circuits, Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2006.

Mean distance: 18.88
 

Parents

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Erich P. Ippen grad student 2006 MIT
 (Optical studies of photonic crystals and high index-contrast microphotonic circuits)
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Publications

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Gertler S, Otterstrom NT, Gehl M, et al. (2022) Narrowband microwave-photonic notch filters using Brillouin-based signal transduction in silicon. Nature Communications. 13: 1947
Liu K, Jin N, Cheng H, et al. (2022) Ultralow 0.034 dB/m loss wafer-scale integrated photonics realizing 720 million Q and 380 μW threshold Brillouin lasing. Optics Letters. 47: 1855-1858
Puckett MW, Liu K, Chauhan N, et al. (2021) 422 Million intrinsic quality factor planar integrated all-waveguide resonator with sub-MHz linewidth. Nature Communications. 12: 934
Kittlaus E, Kharel P, Otterstrom NT, et al. (2019) Corrections to “RF-Photonic Filters via On-Chip Photonic-Phononic Emit–Receive Operations” Journal of Lightwave Technology. 37: 3434-3434
Eggleton BJ, Poulton CG, Rakich PT, et al. (2019) Brillouin integrated photonics Nature Photonics. 13: 664-677
Otterstrom NT, Behunin RO, Kittlaus EA, et al. (2018) A silicon Brillouin laser. Science (New York, N.Y.). 360: 1113-1116
Kittlaus EA, Kharel P, Otterstrom NT, et al. (2018) RF-Photonic Filters via On-Chip Photonic–Phononic Emit–Receive Operations Journal of Lightwave Technology. 36: 2803-2809
Kittlaus EA, Otterstrom NT, Rakich PT. (2017) On-chip inter-modal Brillouin scattering. Nature Communications. 8: 15819
Siddiqui A, Reinke C, Shin H, et al. (2017) Toward high fidelity spectral sensing and RF signal processing in silicon photonic and nano-opto-mechanical platforms Proceedings of Spie. 10193
Behunin RO, Kharel P, Renninger WH, et al. (2016) Engineering dissipation with phononic spectral hole burning. Nature Materials
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