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Dive into the research topics where Haolan Zhao is active.

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Featured researches published by Haolan Zhao.


Photonics Research | 2015

Silicon and silicon nitride photonic circuits for spectroscopic sensing on-a-chip [Invited]

Ananth Subramanian; Eva Ryckeboer; Ashim Dhakal; Frédéric Peyskens; Aditya Malik; Bart Kuyken; Haolan Zhao; Shibnath Pathak; Alfonso Ruocco; Andreas De Groote; Pieter Wuytens; Daan Martens; François Leo; Weiqiang Xie; Utsav Dave; Muhammad Muneeb; Pol Van Dorpe; Joris Van Campenhout; Wim Bogaerts; Peter Bienstman; Nicolas Le Thomas; Dries Van Thourhout; Zeger Hens; Günther Roelkens; Roel Baets

There is a rapidly growing demand to use silicon and silicon nitride (Si3N4) integrated photonics for sensing applications, ranging from refractive index to spectroscopic sensing. By making use of advanced CMOS technology, complex miniaturized circuits can be easily realized on a large scale and at a low cost covering visible to mid-IR wavelengths. In this paper we present our recent work on the development of silicon and Si3N4-based photonic integrated circuits for various spectroscopic sensing applications. We report our findings on waveguide-based absorption, and Raman and surface enhanced Raman spectroscopy. Finally we report on-chip spectrometers and on-chip broadband light sources covering very near-IR to mid-IR wavelengths to realize fully integrated spectroscopic systems on a chip.


Optics Letters | 2015

Visible-to-near-infrared octave spanning supercontinuum generation in a silicon nitride waveguide

Haolan Zhao; Bart Kuyken; Stéphane Clemmen; François Leo; Ananth Subramanian; Ashim Dhakal; Philippe Helin; Simone Severi; Edouard Brainis; Günther Roelkens; Roel Baets

The generation of an octave spanning supercontinuum covering 488-978 nm (at -30  dB) is demonstrated for the first time on-chip. This result is achieved by dispersion engineering a 1-cm-long Si3N4 waveguide and pumping it with an 100-fs Ti:Sapphire laser emitting at 795 nm. This work offers a bright broadband source for biophotonic applications and frequency metrology.


Interface Focus | 2016

Single mode waveguide platform for spontaneous and surface-enhanced on-chip Raman spectroscopy

Ashim Dhakal; Frédéric Peyskens; Stéphane Clemmen; Ali Raza; Pieter Wuytens; Haolan Zhao; Nicolas Le Thomas; Roel Baets

We review an on-chip approach for spontaneous Raman spectroscopy and surface-enhanced Raman spectroscopy based on evanescent excitation of the analyte as well as evanescent collection of the Raman signal using complementary metal oxide semiconductor (CMOS)-compatible single mode waveguides. The signal is either directly collected from the analyte molecules or via plasmonic nanoantennas integrated on top of the waveguides. Flexibility in the design of the geometry of the waveguide, and/or the geometry of the antennas, enables optimization of the collection efficiency. Furthermore, the sensor can be integrated with additional functionality (sources, detectors, spectrometers) on the same chip. In this paper, the basic theoretical concepts are introduced to identify the key design parameters, and some proof-of-concept experimental results are reviewed.


Nanophotonics | 2017

Nonlinear optical interactions in silicon waveguides

Bart Kuyken; François Leo; Stéphane Clemmen; Utsav Dave; Haolan Zhao; Simon Holzner; T Idegushi; X. Liu; Jassem Safioui; Ming Yan; Stéphane Coen; W. M. J. Green; Simon-Pierre Gorza; Theodor W. Hänsch; Shankar Kumar Selvaraja; Serge Massar; Nathalie Picqué; Richard M. Osgood; Peter Verheyen; Jan Van Campenhout; Roel Baets; Günther Roelkens

Abstract The strong nonlinear response of silicon photonic nanowire waveguides allows for the integration of nonlinear optical functions on a chip. However, the detrimental nonlinear optical absorption in silicon at telecom wavelengths limits the efficiency of many such experiments. In this review, several approaches are proposed and demonstrated to overcome this fundamental issue. By using the proposed methods, we demonstrate amongst others supercontinuum generation, frequency comb generation, a parametric optical amplifier, and a parametric optical oscillator.


Proceedings of SPIE | 2017

Spectroscopic sensing with silicon nitride photonic integrated circuits

Stéphane Clemmen; Ali Raza; Ashim Dhakal; Frédéric Peyskens; Ananth Subramanian; P. Van Dorpe; Pieter Wuytens; Haolan Zhao; Eva Ryckeboer; Simone Severi; N. Le Thomas; Roel Baets

No abstract available


conference on lasers and electro optics | 2015

Visible-to-near-infrared octave spanning supercontinuum generation in a partially underetched silicon nitride waveguide

Haolan Zhao; Bart Kuyken; François Leo; Stéphane Clemmen; Edouard Brainis; Günther Roelkens; Roel Baets

The generation of an octave spanning supercontinuum covering most of the visible spectrum is demonstrated for the first time in a Si3N4 waveguide. This result is achieved by dispersion engineering through partially underetching a waveguide.


Optics Letters | 2018

Stimulated Raman spectroscopy of analytes evanescently probed by a silicon nitride photonic integrated waveguide

Haolan Zhao; Stéphane Clemmen; Ali Raza; Roel Baets


conference on lasers and electro optics | 2018

Demonstration of Stimulated Raman Scattering on a Silicon Nitride Photonic Integrated Waveguide

Haolan Zhao; Stéphane Clemmen; Ali Raza; Roel Baets


Advanced Photonics 2018 (BGPP, IPR, NP, NOMA, Sensors, Networks, SPPCom, SOF) | 2018

Stimulation of waveguide-enhanced Raman spectroscopy of liquids

Haolan Zhao; Stéphane Clemmen; Ali Raza; Roel Baets


Fea Research Symposium | 2017

On-chip raman spectroscopy

Pieter Wuytens; Ali Raza; Haolan Zhao; Nina Turk; Frédéric Peyskens; Ashim Dhakal; Xiaomin Nie; Eva Ryckeboer; Stéphane Clemmen; Nicolas Le Thomas; Roel Baets

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