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Robert T. Murray
Robert T. Murray
Verified email at imperial.ac.uk - Homepage
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Cited by
Year
Characterization of the second-and third-order nonlinear optical susceptibilities of monolayer MoS2 using multiphoton microscopy
RI Woodward, RT Murray, CF Phelan, REP De Oliveira, TH Runcorn, ...
2D Materials 4 (1), 011006, 2016
1982016
High average power parametric wavelength conversion at 3.31–3.48 μm in MgO: PPLN
RT Murray, TH Runcorn, S Guha, JR Taylor
Optics Express 25 (6), 6421-6430, 2017
522017
Highly efficient mid-infrared difference-frequency generation using synchronously pulsed fiber lasers
RT Murray, TH Runcorn, EJR Kelleher, JR Taylor
Optics Letters 41 (11), 2446-2449, 2016
462016
Simultaneous scalar and cross-phase modulation instabilities in highly birefringent photonic crystal fiber
A Kudlinski, A Bendahmane, D Labat, S Virally, RT Murray, EJR Kelleher, ...
Optics express 21 (7), 8437-8443, 2013
392013
Visible Raman-shifted fiber lasers for biophotonic applications
TH Runcorn, FG Görlitz, RT Murray, EJR Kelleher
IEEE Journal of Selected Topics in Quantum Electronics 24 (3), 1-8, 2017
362017
easySLM‐STED: Stimulated emission depletion microscopy with aberration correction, extended field of view and multiple beam scanning
F Görlitz, S Guldbrand, TH Runcorn, RT Murray, AL Jaso‐Tamame, ...
Journal of Biophotonics 11 (11), e201800087, 2018
302018
Widely tunable polarization maintaining photonic crystal fiber based parametric wavelength conversion
RT Murray, EJR Kelleher, SV Popov, A Mussot, A Kudlinski, JR Taylor
Optics Express 21 (13), 15826-15833, 2013
282013
Duration-tunable picosecond source at 560 nm with watt-level average power
TH Runcorn, RT Murray, EJR Kelleher, SV Popov, JR Taylor
Optics Letters 40 (13), 3085-3088, 2015
232015
Synchronously pumped photonic crystal fiber-based optical parametric oscillator
RT Murray, EJR Kelleher, SV Popov, A Mussot, A Kudlinski, JR Taylor
Optics letters 37 (15), 3156-3158, 2012
222012
Highly efficient nanosecond 560 nm source by SHG of a combined Yb-Raman fiber amplifier
TH Runcorn, RT Murray, JR Taylor
Optics Express 26 (4), 4440-4447, 2018
212018
Fiber-integrated frequency-doubling of a picosecond Raman laser to 560 nm
TH Runcorn, T Legg, RT Murray, EJR Kelleher, SV Popov, JR Taylor
Optics Express 23 (12), 15728-15733, 2015
202015
Nanosecond pulsed 620 nm source by frequency-doubling a phosphosilicate Raman fiber amplifier
AM Chandran, TH Runcorn, RT Murray, JR Taylor
Optics letters 44 (24), 6025-6028, 2019
122019
Seeded optical parametric generation in CdSiP2 pumped by a Raman fiber amplifier at 1.24 µm
RT Murray, AM Chandran, RA Battle, TH Runcorn, PG Schunemann, ...
Optics Letters 46 (9), 2039-2042, 2021
102021
High Average Power Second-harmonic Generation of a CW Erbium Fiber MOPA
TH Runcorn, RT Murray, JR Taylor
IEEE Photonics Technology Letters 29 (18), 1576-1579, 2017
102017
Fiber-integrated 780 nm source for visible parametric generation
DJJ Hu, RT Murray, T Legg, TH Runcorn, M Zhang, RI Woodward, JL Lim, ...
Optics Express 22 (24), 29726-29732, 2014
102014
Watt-level 743 nm source by second-harmonic generation of a cascaded phosphosilicate Raman fiber amplifier
AM Chandran, RA Battle, RT Murray, TH Runcorn, JR Taylor
Optics Express 29 (25), 41467-41474, 2021
82021
Watt-level nanosecond 589 nm source by SHG of a cascaded Raman amplifier
TH Runcorn, RT Murray, EJR Kelleher, JR Taylor
Advanced Solid State Lasers, ATh1A. 3, 2016
62016
An in vitro comparison of three nucleus pulposus removal techniques for partial intervertebral disc replacement: An ultra‐high resolution MRI study
T Rahman, N Baxan, RT Murray, S Tavana, TP Schaer, N Smith, J Bull, ...
JOR spine 6 (2), e1232, 2023
52023
Mid-infrared difference-frequency generation directly pumped by a fiber four-wave mixing source
RA Battle, AM Chandran, TH Runcorn, A Mussot, A Kudlinski, RT Murray, ...
Optics Letters 48 (2), 387-390, 2023
52023
High resolution mass spectrometry imaging using 3 micron laser ablation
RA Battle, D Simon, Y Xiang, K Robinson, TH Runcorn, RT Murray, ...
Optical Interactions with Tissue and Cells XXXIV 12377, 36-38, 2023
42023
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