InGaAs∕ AlAsSb∕ InP quantum cascade lasers operating at wavelengths close to 3μm DG Revin, JW Cockburn, MJ Steer, RJ Airey, M Hopkinson, AB Krysa, ... Applied Physics Letters 90 (2), 2007 | 145 | 2007 |
Room temperature operation of InAs∕ AlSb quantum cascade lasers R Teissier, D Barate, A Vicet, C Alibert, AN Baranov, X Marcadet, ... Applied physics letters 85 (2), 167-169, 2004 | 120 | 2004 |
InGaAs∕ AlAsSb quantum cascade lasers DG Revin, LR Wilson, EA Zibik, RP Green, JW Cockburn, MJ Steer, ... Applied physics letters 85 (18), 3992-3994, 2004 | 92 | 2004 |
Quantum cascade lasers grown by metalorganic vapor phase epitaxy JS Roberts, RP Green, LR Wilson, EA Zibik, DG Revin, JW Cockburn, ... Applied Physics Letters 82 (24), 4221-4223, 2003 | 82 | 2003 |
Artefacts in geometric phase analysis of compound materials JJP Peters, R Beanland, M Alexe, JW Cockburn, DG Revin, SY Zhang, ... Ultramicroscopy 157, 91-97, 2015 | 81 | 2015 |
λ∼ 3.1 μm room temperature InGaAs/AlAsSb/InP quantum cascade lasers SY Zhang, DG Revin, JW Cockburn, K Kennedy, AB Krysa, M Hopkinson Applied Physics Letters 94 (3), 2009 | 78 | 2009 |
Active mode locking of quantum cascade lasers in an external ring cavity DG Revin, M Hemingway, Y Wang, JW Cockburn, A Belyanin Nature Communications 7 (1), 11440, 2016 | 63 | 2016 |
Sensitivity advantage of QCL tunable-laser mid-infrared spectroscopy over FTIR spectroscopy DTD Childs, RA Hogg, DG Revin, IU Rehman, JW Cockburn, SJ Matcher Applied Spectroscopy Reviews 50 (10), 822-839, 2015 | 62 | 2015 |
High peak power λ∼ 3.3 and 3.5 μm InGaAs/AlAs (Sb) quantum cascade lasers operating up to 400 K JP Commin, DG Revin, SY Zhang, AB Krysa, K Kennedy, JW Cockburn Applied Physics Letters 97 (3), 2010 | 49 | 2010 |
High-performance distributed feedback quantum cascade lasers grown by metalorganic vapor phase epitaxy RP Green, LR Wilson, EA Zibik, DG Revin, JW Cockburn, C Pflügl, ... Applied physics letters 85 (23), 5529-5531, 2004 | 49 | 2004 |
Room-temperature operation of InGaAs/AlInAs quantum cascade lasers grown by metalorganic vapor phase epitaxy RP Green, A Krysa, JS Roberts, DG Revin, LR Wilson, EA Zibik, WH Ng, ... Applied physics letters 83 (10), 1921-1922, 2003 | 47 | 2003 |
The influence of phosphorus and hydrogen ion implantation on the photoluminescence of SiO2 with Si nanoinclusions DI Tetelbaum, SA Trushin, VA Burdov, AI Golovanov, DG Revin, ... Nuclear Instruments and Methods in Physics Research Section B: Beam …, 2001 | 45 | 2001 |
The enhancement of luminescence in ion implanted Si quantum dots in SiO2 matrix by means of dose alignment and doping DI Tetelbaum, ON Gorshkov, SA Trushun, DG Revin, DM Gaponova, ... Nanotechnology 11 (4), 295, 2000 | 45 | 2000 |
Characterization of intersubband devices combining a nonequilibrium many body theory with transmission spectroscopy experiments MF Pereira, R Nelander, A Wacker, DG Revin, MR Soulby, LR Wilson, ... Journal of Materials Science: Materials in Electronics 18, 689-694, 2007 | 41 | 2007 |
Fingerprints of spatial charge transfer in quantum cascade lasers R Nelander, A Wacker, MF Pereira, DG Revin, MR Soulby, LR Wilson, ... Journal of Applied Physics 102 (11), 2007 | 40 | 2007 |
Intervalley scattering in GaAs–AlAs quantum cascade lasers LR Wilson, DA Carder, JW Cockburn, RP Green, DG Revin, MJ Steer, ... Applied physics letters 81 (8), 1378-1380, 2002 | 39 | 2002 |
Broadband 6μm< λ< 8μm superluminescent quantum cascade light-emitting diodes EA Zibik, WH Ng, DG Revin, LR Wilson, JW Cockburn, KM Groom, ... Applied physics letters 88 (12), 2006 | 35 | 2006 |
intersubband emission from InGaAs–AlAsSb quantum cascade structures DG Revin, LR Wilson, EA Zibik, RP Green, JW Cockburn, MJ Steer, ... Applied physics letters 84 (9), 1447-1449, 2004 | 34 | 2004 |
Dispersive gain and loss in midinfrared quantum cascade laser DG Revin, MR Soulby, JW Cockburn, Q Yang, C Manz, J Wagner Applied Physics Letters 92 (8), 2008 | 33 | 2008 |
Intersubband spectroscopy of quantum cascade lasers under operating conditions DG Revin, LR Wilson, JW Cockburn, AB Krysa, JS Roberts, RJ Airey Applied physics letters 88 (13), 2006 | 33 | 2006 |