activity
20182022
most citedMultimode strong coupling in cavity optomechanics

2 citations · 3 across the 3 of their papers we have counts for

collaborators

10 papers

physics.optics20221 cited

Intermodal strong coupling and wideband, low-loss isolation in silicon

Yishu Zhou, Freek Ruesink, Shai Gertler +18

Strong coupling enables a diverse set of applications that include optical memories, non-magnetic isolators, photonic state manipulation, and signal processing. To date, strong cou…

physics.app-ph2020

Tunable RF-photonic filtering with high out-of-band rejection in silicon

Shai Gertler, Eric A. Kittlaus, Nils T. Otterstrom +1

The ever-increasing demand for high speed and large bandwidth has made photonic systems a leading candidate for the next generation of telecommunication and radar technologies. The…

physics.optics2020

Back-scatter immune injection-locked Brillouin laser in silicon

Nils T. Otterstrom, Shai Gertler, Yishu Zhou +9

As self-sustained oscillators, lasers possess the unusual ability to spontaneously synchronize. These nonlinear dynamics are the basis for a simple yet powerful stabilization techn…

physics.optics2019

Deep learning of ultrafast pulses with a multimode fiber

Wen Xiong, Brandon Redding, Shai Gertler +3

Characterizing ultrashort optical pulses has always been a critical but difficult task, which has a broad range of applications. We propose and demonstrate a self-referenced method…

physics.app-ph2019

Shaping nonlinear optical response using nonlocal forward Brillouin interactions

Shai Gertler, Prashanta Kharel, Eric A. Kittlaus +2

We grow accustomed to the notion that optical susceptibilities can be treated as a local property of a medium. In the context of nonlinear optics, both Kerr and Raman processes are…

physics.app-ph2019

Microwave filtering using forward Brillouin scattering in photonic-phononic emit-receive devices

Shai Gertler, Eric A. Kittlaus, Nils T. Otterstrom +2

Microwave photonic systems are compelling for their ability to process signals at high frequencies and over extremely wide bandwidths as a basis for next generation communication a…