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Featured researches published by Yejun Wang.


Applied Optics | 2017

Optical ray tracing method for simulating beam-steering effects during laser diagnostics in turbulent media

Yejun Wang; Waruna D. Kulatilaka

In most coherent spectroscopic methods used in gas-phase laser diagnostics, multiple laser beams are focused and crossed at a specific location in space to form the probe region. The desired signal is then generated as a result of nonlinear interactions between the beams in this overlapped region. When such diagnostic schemes are implemented in practical devices having turbulent reacting flow fields with refractive index gradients, the resulting beam steering can give rise to large measurement uncertainties. The objective of this work is to simulate beam-steering effects arising from pressure and temperature gradients in gas-phase media using an optical ray tracing approach. The ZEMAX OpticStudio software package is used to simulate the beam crossing and uncrossing effects in the presence of pressure and temperature gradients, specifically the conditions present in high-pressure, high-temperature combustion devices such as gas turbine engines. Specific cases involving two-beam and three-beam crossing configurations are simulated. The model formulation, the effects of pressure and temperature gradients, and the resulting beam-steering effects are analyzed. The results show that thermal gradients in the range of 300-3000 K have minimal effects, while pressure gradients in the range of 1-50 atm result in pronounced beam steering and the resulting signal fluctuations in the geometries investigated. However, with increasing pressures, the temperature gradients can also have a pronounced effect on the resultant signal levels.


conference on lasers and electro optics | 2012

Direct determination of transparency current in mid-infrared quantum cascade laser

D. G. Revin; R. S. Hassan; A. B. Krysa; K. Kennedy; A. N. Atkins; J. W. Cockburn; Yejun Wang; Alexey Belyanin

Temperature dependent transparency current values have directly been extracted from the transmission spectra for the mid infrared quantum cascade laser. This current is found to contribute more than 65% to the threshold at room temperature.


Applied Physics B | 2018

Detection of carbon monoxide (CO) in sooting hydrocarbon flames using femtosecond two-photon laser-induced fluorescence (fs-TPLIF)

Yejun Wang; Waruna D. Kulatilaka


Optics Letters | 2017

Femtosecond two-photon laser-induced fluorescence of krypton for high-speed flow imaging

Yejun Wang; Cade Capps; Waruna D. Kulatilaka


Proceedings of the Combustion Institute | 2018

CO Imaging in piloted liquid-spray flames using femtosecond two-photon LIF

Yejun Wang; Ayush Jain; Waruna D. Kulatilaka


Proceedings of the Combustion Institute | 2018

Effect of H-atom concentration on soot formation in premixed ethylene/air flames

Ayush Jain; Yejun Wang; Waruna D. Kulatilaka


Imaging and Applied Optics 2018 (3D, AO, AIO, COSI, DH, IS, LACSEA, LS&C, MATH, pcAOP) | 2018

Investigation of Femtosecond Two-Photon LIF of CO at Elevated Pressures

Yejun Wang; Waruna D. Kulatilaka


2018 Aerodynamic Measurement Technology and Ground Testing Conference | 2018

Structure and Dynamics of Liquid-Fueled Piloted Spray Flames

Yejun Wang; Tyler Paschal; Waruna D. Kulatilaka


2018 Aerodynamic Measurement Technology and Ground Testing Conference | 2018

Investigation of Soot Formation Near Flame-Wall Interaction Region in Rich Ethylene/Air Flames

Ayush Jain; Yejun Wang; Waruna D. Kulatilaka


conference on lasers and electro optics | 2017

Two-photon laser induced fluorescence of Krypton using femtosecond pulses

Yejun Wang; Waruna D. Kulatilaka

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A. B. Krysa

University of Sheffield

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A. N. Atkins

University of Sheffield

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D. G. Revin

University of Sheffield

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K. Kennedy

University of Sheffield

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