Full-dispersion Monte Carlo simulation of phonon transport in micron-sized graphene nanoribbons S Mei, LN Maurer, Z Aksamija, I Knezevic Journal of Applied Physics 116 (16), 2014 | 91 | 2014 |
Thermal conductivity of III-V semiconductor superlattices S Mei, I Knezevic Journal of Applied Physics 118 (17), 175101, 2015 | 72 | 2015 |
Measurements of the thermal resistivity of InAlAs, InGaAs, and InAlAs/InGaAs superlattices GR Jaffe, S Mei, C Boyle, JD Kirch, DE Savage, D Botez, LJ Mawst, ... ACS applied materials & interfaces 11 (12), 11970-11975, 2019 | 30 | 2019 |
Deep learning based noise reduction method for automatic 3D segmentation of the anterior of lamina cribrosa in optical coherence tomography volumetric scans Z Mao, A Miki, S Mei, Y Dong, K Maruyama, R Kawasaki, S Usui, ... Biomedical optics express 10 (11), 5832-5851, 2019 | 28 | 2019 |
Rayleigh waves, surface disorder, and phonon localization in nanostructures LN Maurer, S Mei, I Knezevic Physical Review B 94 (4), 045312, 2016 | 28 | 2016 |
Quantum transport simulation of high-power 4.6-μm quantum cascade lasers O Jonasson, S Mei, F Karimi, J Kirch, D Botez, L Mawst, I Knezevic Photonics 3 (2), 38, 2016 | 24 | 2016 |
Thermal conductivity of ternary III-V semiconductor alloys: The role of mass difference and long-range order S Mei, I Knezevic Journal of Applied Physics 123 (12), 2018 | 13 | 2018 |
Boundaries, interfaces, point defects, and strain as impediments to thermal transport in nanostructures S Mei, CJ Foss, LN Maurer, O Jonasson, Z Aksamija, I Knezevic 2017 IEEE International Reliability Physics Symposium (IRPS), 6A-1.1-6A-1.10, 2017 | 11 | 2017 |
Modeling quantum cascade lasers: Coupled electron and phonon transport far from equilibrium and across disparate spatial scales YB Shi, S Mei, O Jonasson, I Knezevic Fortschritte der Physik 65 (6-8), 1600084, 2017 | 10 | 2017 |
Discussion of:“Nonparametric regression using deep neural networks with ReLU activation function” B Ghorbani, S Mei, T Misiakiewicz, A Montanari | 8 | 2020 |
Three-Dimensional Volume Calculation of Intrachoroidal Cavitation Using Deep-Learning–Based Noise Reduction of Optical Coherence Tomography S Fujimoto, A Miki, K Maruyama, S Mei, Z Mao, Z Wang, K Chan, ... Translational Vision Science & Technology 11 (7), 1-1, 2022 | 6 | 2022 |
Diagnosis of choroidal disease with deep learning-based image enhancement and volumetric quantification of optical coherence tomography K Maruyama, S Mei, H Sakaguchi, C Hara, A Miki, Z Mao, R Kawasaki, ... Translational Vision Science & Technology 11 (1), 22-22, 2022 | 6 | 2022 |
On a molecular based Q-tensor model for liquid crystals with density variations S Mei, P Zhang Multiscale Modeling & Simulation 13 (3), 977-1000, 2015 | 6 | 2015 |
Quantum cascade lasers: electrothermal simulation S Mei, Y Shi, O Jonasson, I Knezevic Handbook of Optoelectronic Device Modeling and Simulation, 235-260, 2017 | 5 | 2017 |
Automated 3d lamina cribrosa segmentation in optical coherence tomography volumetric scans Z Mao, A Miki, S Mei, Y Dong, K Maruyama, R Kawasaki, S Usui, ... Investigative Ophthalmology & Visual Science 60 (9), 1485-1485, 2019 | 3 | 2019 |
Phonon Monte Carlo: Generating Random Variates for Thermal Transport Simulation LN Maurer, S Mei, I Knezevic Nanophononics, 109-137, 2017 | 2 | 2017 |
Method and apparatus for measuring tear film thickness using optical interference J Kim, B Cao, S Mei, K Chan, Z Wang, Z Mao US Patent 11,614,321, 2023 | 1 | 2023 |
Deep-learning-based Projection Artifact Removal in Optical Coherence Tomography Angiography Volumes S Mei, Z Mao, Z Wang, K Chan Investigative Ophthalmology & Visual Science 61 (7), 4577-4577, 2020 | 1 | 2020 |
Method and apparatus for optical coherence tomography angiography S Mei, M Toshihiro, D Li, Z Mao, Z Wang, K Chan US Patent 11,972,544, 2024 | | 2024 |
Medical diagnostic apparatus and method for evaluation of pathological conditions using 3d optical coherence tomography data and images K Nishida, K Maruyama, M Atsuya, R Kawasaki, H Sakaguchi, H Chikako, ... US Patent App. 18/012,667, 2023 | | 2023 |