activity
20182022
most citedReal-time Electrical Tuning of an Optical Spring on a Monolithically Integrated Ultrahigh Q Lithium Nibote Microresonator

33 citations · 61 across the 7 of their papers we have counts for

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5 papers · 1 filter

physics.app-ph20222 cited

High-production-rate fabrication of low-loss lithium niobate electro-optic modulators using photolithography assisted chemo-mechanical etching (PLACE)

Rongbo Wu, Lang Gao, Youting Liang +7

Integrated thin-film lithium niobate (LN) electro-optic (EO) modulators of broad bandwidth, low insertion loss, low cost and high production rate are essential elements in contempo…

physics.app-ph202013 cited

High-index-contrast single-mode optical waveguides fabricated on lithium niobate by photolithography assisted chemo-mechanical etching (PLACE)

Jianhao Zhang, Rongbo Wu, Min Wang +7

We report fabrication of low loss single mode waveguides on lithium niobate on insulator (LNOI) cladded by a layer of SiO2. Our technique, termed photolithography assisted chemo-me…

physics.app-ph2019

Fabrication of a multifunctional photonic integrated chip on lithium niobate on insulator using femtosecond laser assisted chemo-mechanical polish

Rongbo Wu, Jintian Lin, Min Wang +5

We report fabrication of a multifunctional photonic integrated chip on lithium niobate on insulate (LNOI), which is achieved by femtosecond laser assisted chemo-mechanical polish.…

physics.app-ph2019

High-precision measurement of a propagation loss of single-mode optical waveguides on lithium niobate on insulator

Jintian Lin, Junxia Zhou, Rongbo Wu +6

We demonstrate fabrication of single-mode optical waveguides on lithium niobate on insulator (LNOI) by optical patterning combined with chemo-mechanical polishing. The fabricated L…

physics.app-ph2018

Low-loss Lithium Niobate on Insulator (LNOI) Waveguides of a 10 cm-length and a Sub-nanometer Surface Roughness

Rongbo Wu, Min Wang, Jian Xu +9

We develop a technique for realizing lithium niobate on insulator (LNOI) waveguides of a multi-centimeter-length with a propagation loss as low as 0.027 dB/cm. Our technique relies…