Kartik
Srinivasan
Spencer, D. ., Drake, T. ., Briles, T. ., Stone, J. ., Sinclair, L. ., Fredrick, C. ., … Papp, S. . (2018). An optical-frequency synthesizer using integrated photonics. Nature, 557, 81–85. http://doi.org/10.1038/s41586-018-0065-7
Forsch, M. ., Stockill, R. ., Wallucks, A. ., Marinkovic, I. ., Gärtner, C. ., Norte, R. ., … Gröblacher, S. . (2018). Microwave-to-optics conversion using a mechanical oscillator in its quantum groundstate. arXiv:1812.07588 [cond-Mat, physics:physics, physics:Quant-Ph]. Retrieved from http://arxiv.org/abs/1812.07588
Grutter, K. ., Davanco, M. ., Balram, K. ., & Srinivasan, K. . (2018). Invited Article: Tuning and stabilization of optomechanical crystal cavities through NEMS integration. APL Photonics, 3, 100801. http://doi.org/10.1063/1.5042225
Briles, T. ., Stone, J. ., Drake, T. ., Spencer, D. ., Fredrick, C. ., Li, Q. ., … Papp, S. . (2018). Interlocking Kerr-microresonator frequency combs for microwave to optical synthesis. Optics Letters, 43, 2933. http://doi.org/10.1364/OL.43.002933
Manurkar, P. ., Perez, E. ., Hickstein, D. ., Carlson, D. ., Chiles, J. ., Westly, D. ., … Coddington, I. . (2018). Fully self-referenced frequency comb consuming 5 watts of electrical power. OSA Continuum, 1, 274. http://doi.org/10.1364/OSAC.1.000274
Yu, S.-P. ., Briles, T. ., Moille, G. ., Lu, X. ., Diddams, S. ., Srinivasan, K. ., & Papp, S. . (2019). Tuning Kerr-Soliton Frequency Combs to Atomic Resonances. Physical Review Applied, 11, 044017. http://doi.org/10.1103/PhysRevApplied.11.044017
Drake, T. ., Briles, T. ., Stone, J. ., Spencer, D. ., Carlson, D. ., Hickstein, D. ., … Papp, S. . (2019). Terahertz-Rate Kerr-Microresonator Optical Clockwork. Physical Review X, 9, 031023. http://doi.org/10.1103/PhysRevX.9.031023
Metcalf, A. ., Anderson, T. ., Bender, C. ., Blakeslee, S. ., Brand, W. ., Carlson, D. ., … Ycas, G. . (2019). Stellar spectroscopy in the near-infrared with a laser frequency comb. Optica, 6, 233. http://doi.org/10.1364/OPTICA.6.000233
Liu, J. ., Su, R. ., Wei, Y. ., Yao, B. ., da Silva, S. ., Yu, Y. ., … Wang, X. . (2019). A solid-state source of strongly entangled photon pairs with high brightness and indistinguishability. Nature Nanotechnology, 14, 586–593. http://doi.org/10.1038/s41565-019-0435-9
Hickstein, D. ., Carlson, D. ., Mundoor, H. ., Khurgin, J. ., Srinivasan, K. ., Westly, D. ., … Papp, S. . (2019). Self-organized nonlinear gratings for ultrafast nanophotonics. Nature Photonics, 13, 494–499. http://doi.org/10.1038/s41566-019-0449-8