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RONGPING WANG
RONGPING WANG
Verified email at rsphysse.anu.edu.au
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Year
Muon reconstruction performance of the ATLAS detector in proton–proton collision data at s =13 TeV
G Aad, B Abbott, J Abdallah, B Abeloos, R Aben, M Abolins, OS AbouZeid, ...
The European Physical Journal C 76 (5), 1-30, 2016
3303*2016
The BABAR detector
B Aubert, A Bazan, A Boucham, D Boutigny, I De Bonis, J Favier, ...
Nuclear Instruments and Methods in Physics Research Section A: Accelerators …, 2002
3297*2002
Raman spectral study of silicon nanowires: High-order scattering and phonon confinement effects
RP WANG, GW ZHOU, YL LIU, et al.
PHYSICAL REVIEW B 61, 16827-16832, 2000
3232000
Size dependence of electron-phonon coupling in ZnO nanowires
RP Wang, G Xu, P Jin
Physical Review B 69 (11), 113303, 2004
3092004
Mid-infrared supercontinuum generation in chalcogenides
Y Yu, X Gai, T Wang, P Ma, R Wang, Z Yang, DY Choi, S Madden, ...
Optical Materials Express 3 (8), 1075-1086, 2013
1982013
1.8-10 μm mid-infrared supercontinuum generated in a step-index chalcogenide fiber using low peak pump power
Y Yu, B Zhang, X Gai, C Zhai, S Qi, W Guo, Z Yang, R Wang, DY Choi, ...
Optics letters 40 (6), 1081-1084, 2015
1832015
A broadband, quasi‐continuous, mid‐infrared supercontinuum generated in a chalcogenide glass waveguide
Y Yu, X Gai, P Ma, DY Choi, Z Yang, R Wang, S Debbarma, SJ Madden, ...
Laser & Photonics Reviews 8 (5), 792-798, 2014
1782014
A broadband, quasi‐continuous, mid‐infrared supercontinuum generated in a chalcogenide glass waveguide
Y Yu, X Gai, P Ma, DY Choi, Z Yang, R Wang, S Debbarma, SJ Madden, ...
Laser & Photonics Reviews 8 (5), 792-798, 2014
1782014
Systematic z-scan measurements of the third order nonlinearity of chalcogenide glasses
T Wang, X Gai, W Wei, R Wang, Z Yang, X Shen, S Madden, ...
Optical Materials Express 4 (5), 1011-1022, 2014
1572014
Mid‐infrared supercontinuum covering 2.0–16 μm in a low‐loss telluride single‐mode fiber
Z Zhao, B Wu, X Wang, Z Pan, Z Liu, P Zhang, X Shen, Q Nie, S Dai, ...
Laser & Photonics Reviews 11 (2), 1700005, 2017
1522017
Progress in optical waveguides fabricated from chalcogenide glasses
X Gai, T Han, A Prasad, S Madden, DY Choi, R Wang, D Bulla, ...
Optics express 18 (25), 26635-26646, 2010
1502010
Properties of GexAsySe1-x-y glasses for all-optical signal processing
A Prasad, CJ Zha, RP Wang, A Smith, S Madden, B Luther-Davies
Optics Express 16 (4), 2804-2815, 2008
1482008
BaBar technical design report
D Boutigny, C Goy, Y Karyotakis, JP Lees, S Lees Rosier, C Evangelista, ...
Stanford Linear Accelerator Center, Stanford, CA94309, 1995
1051995
Experimental demonstration of linearly polarized 2–10 μm supercontinuum generation in a chalcogenide rib waveguide
Y Yu, X Gai, P Ma, K Vu, Z Yang, R Wang, DY Choi, S Madden, ...
Optics Letters 41 (5), 958-961, 2016
1002016
On the properties and stability of thermally evaporated Ge–As–Se thin films
DAP Bulla, RP Wang, A Prasad, AV Rode, SJ Madden, B Luther-Davies
Applied Physics A 96 (3), 615-625, 2009
1002009
The detector system of the Daya Bay reactor neutrino experiment
FP An, JZ Bai, AB Balantekin, HR Band, D Beavis, W Beriguete, M Bishai, ...
Nuclear Instruments and Methods in Physics Research Section A: Accelerators …, 2016
992016
Supercontinuum generation in the mid-infrared from a dispersion-engineered As 2 S 3 glass rib waveguide
X Gai, DY Choi, S Madden, Z Yang, R Wang, B Luther-Davies
Optics letters 37 (18), 3870-3872, 2012
942012
Correlation between structural and physical properties in Ge–Sb–Se glasses
WH Wei, RP Wang, X Shen, L Fang, B Luther-Davies
The Journal of Physical Chemistry C 117 (32), 16571-16576, 2013
892013
High brightness 2.2–12 μm mid‐infrared supercontinuum generation in a nontoxic chalcogenide step‐index fiber
B Zhang, Y Yu, C Zhai, S Qi, Y Wang, A Yang, X Gai, R Wang, Z Yang, ...
Journal of the American Ceramic Society 99 (8), 2565-2568, 2016
872016
Low loss, high NA chalcogenide glass fibers for broadband mid‐infrared supercontinuum generation
B Zhang, W Guo, Y Yu, C Zhai, S Qi, A Yang, L Li, Z Yang, R Wang, ...
Journal of the American Ceramic Society 98 (5), 1389-1392, 2015
872015
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