검색결과 : 50건
No. | Article |
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1 |
CO-concentration and temperature measurements in reacting CH4/O-2 mixtures doped with diethyl ether behind reflected shock waves He D, Shi L, Nativel D, Herzler J, Fikri M, Schulz C Combustion and Flame, 216, 194, 2020 |
2 |
Gain measurement of terahertz quantum cascade laser via a master-oscillator power-amplifier configuration Yu CR, Zhu H, Wang FF, Chang GL, Zhu HQ, Chen JX, Xu GY, He L Journal of Crystal Growth, 514, 98, 2019 |
3 |
Real time monitoring of the chemistry of hydroxylamine nitrate and iron as surrogates for nuclear materials processing Gallmeier EA, Gallmeier KM, McFarlane J, Morales-Rodriguez ME Separation Science and Technology, 54(12), 1985, 2019 |
4 |
MBE growth of strain-compensated InGaAs/InAlAs/InP quantum cascade lasers Gutowski P, Sankowska I, Karbownik P, Pierscinska D, Serebrennikova O, Morawiec M, Pruszynska-Karbownik E, Golaszewska-Malec K, Pierscinski K, Muszalski J, Bugajski M Journal of Crystal Growth, 466, 22, 2017 |
5 |
New Methods of Laser-Based Gas Analysis Lambrecht A, Bolwien C, Herbst J, Kuhnemann F, Sandfort V, Wolf S Chemie Ingenieur Technik, 88(6), 746, 2016 |
6 |
Quantum cascade laser assisted time-resolved measurements of carbon dioxide absorption during combustion in DME-HCCI engine Azimov U, Kawahara N, Tomita E Fuel, 182, 807, 2016 |
7 |
Sensitivity of quantum cascade laser performance to thickness and doping variations Siriani DF, Wang CA, Donnelly JP, Connors MK, Missaggia LJ, Calawa DR, McNulty D, Zheng MC, Mansuripur TS, Capasso F Journal of Crystal Growth, 452, 263, 2016 |
8 |
Regrowth of quantum cascade laser active regions on metamorphic buffer layers Rajeev A, Mawst LJ, Kirch JD, Botez D, Miao J, Buelow P, Kuech TF, Li XQ, Sigler C, Babcock SE, Earles T Journal of Crystal Growth, 452, 268, 2016 |
9 |
Single-mode tapered terahertz quantum cascade lasers with lateral gratings Yao C, Xu TH, Wan WJ, Li H, Cao JC Solid-State Electronics, 122, 52, 2016 |
10 |
Stable single-mode distributed feedback quantum cascade lasers at lambda similar to 4.25 mu m with low power consumption Jia ZW, Wang LJ, Zhang JC, Liu FQ, Zhuo N, Zhai SQ, Liu JQ, Wang ZG Solid-State Electronics, 124, 42, 2016 |