121 to 130 of 497 Results
Nov 8, 2023 - Xia Kelin
Meng, Zhenyu; Anand, D Vijay; Lu, Yunpeng; Wu, Jie; Xia, Kelin, 2023, "Replication Data for: Weighted persistent homology for biomolecular data analysis", https://doi.org/10.21979/N9/4II1CF, DR-NTU (Data), V1
In this paper, we systematically review weighted persistent homology (WPH) models and their applications in biomolecular data analysis. Essentially, the weight value, which reflects physical, chemical and biological properties, can be assigned to vertices (atom centers), edges (b... |
Nov 8, 2023 - Wu Jinqi
Wu, Jinqi; Ghosh, Sanjib; Gan, Yusong; Shi, Ying; Mandal, Subhaskar; Sun, Handong; Zhang, Baile; Liew, Timothy Chi Hin; Su, Rui; Xiong, Qihua, 2023, "Higher-order topological polariton corner state lasing", https://doi.org/10.21979/N9/YS6WJW, DR-NTU (Data), V1
Experiment and simulation data |
Nov 7, 2023 - Wu Jinqi
Wu, Jinqi, 2023, "Replication Data for: Perovskite polariton parametric oscillator", https://doi.org/10.21979/N9/FJFSVO, DR-NTU (Data), V1
experimental data and simulation for the paper "Perovskite polariton parametric oscillator" |
Nov 6, 2023 - XU Huawen
Xu, Huawen; Ghosh, Sanjib; Matuszewski, Michal; Liew, C. H. Timothy, 2023, "Universal Self-Correcting Computing with Disordered Exciton-Polariton Neural Networks", https://doi.org/10.21979/N9/NGJASP, DR-NTU (Data), V1
Data for the paper entitled "Universal Self-Correcting Computing with Disordered Exciton-Polariton Neural Networks" |
Nov 6, 2023 - XU Huawen
Xu, Huawen; Wang, Jun; Peng, Yutian; Feng, Jiangang; Huang, Yuqing; Wu, Jinqi; Liu, C. H. Timothy; Xiong, Qihua, 2023, "Controllable vortex lasing arrays in a geometrically frustrated exciton-polariton lattice at room temperature", https://doi.org/10.21979/N9/ZCOBO5, DR-NTU (Data), V1
Data for the paper entitled "Controllable vortex lasing arrays in a geometrically frustrated exciton-polariton lattice at room temperature" |
Nov 6, 2023 - XU Huawen
Xu, Huawen; Xu, Xingran; Mandal, Subhaskar; Banerjee, Rimi; Ghosh, Sanjib; Liew, C. H. Timothy, 2023, "Interaction-induced double-sided skin effect in an exciton-polariton system", https://doi.org/10.21979/N9/IMU2HI, DR-NTU (Data), V1
The data for the paper entitled "Interaction-induced double-sided skin effect in an exciton-polariton system" |
Oct 25, 2023 - Zhao Jiaxin
Zhao, Jiaxin; Su, Rui; Fieramosca, Antonio; Zhao, Weijie; Du, Wei; Liu, Xue; Diederichs, Carole; Sanvitto, Daniele; Liew, Timothy C. H.; Xiong, Qihua, 2023, "Ultralow Threshold Polariton Condensate in a Monolayer Semiconductor Microcavity at Room Temperature", https://doi.org/10.21979/N9/O0Q2YE, DR-NTU (Data), V1
Dataset for Ultralow Threshold Polariton Condensate in a Monolayer Semiconductor Microcavity at Room Temperature |
Oct 25, 2023 - Zhao Jiaxin
Zhao, Jiaxin, 2023, "Nonlinear polariton parametric emission in an atomically thin semiconductor based microcavity", https://doi.org/10.21979/N9/IW7671, DR-NTU (Data), V1
Parametric nonlinear optical processes are at the heart of nonlinear optics underpinning the central role in the generation of entangled photons as well as the realization of coherent optical sources. Exciton-polaritons are capable to sustain parametric scattering at extremely lo... |
Oct 24, 2023 - MANDAL Subhaskar
Mandal, Subhaskar, 2023, "One-Way Reflection-Free Exciton-Polariton Spin-Filtering Channel", https://doi.org/10.21979/N9/4EXC8G, DR-NTU (Data), V1
We consider theoretically exciton-polaritons in a strip of honeycomb lattice with zigzag edges and it is shown that the interplay among the spin-orbit coupling, Zeeman splitting, and an on-site detuning between sublattices can give rise to a band structure where all the edge stat... |
Oct 23, 2023 - Navaratna Nikhil
Navaratna, Nikhil; Tan. Yi Ji; Kumar, Abhishek; Gupta, Manoj; Singh, Ranjan, 2023, "Replication Data for: On-chip topological THz biosensors", https://doi.org/10.21979/N9/LYPYDG, DR-NTU (Data), V1, UNF:6:C5Twdq5XHdgEn2Vnp/wz3w== [fileUNF]
On-chip terahertz (THz) biosensors have enormous potential in advancing the development of integrable devices for real-time, label-free, and noninvasive detection of proteins, DNA, and cancerous tissue. However, high absorption of THz waves by water necessitates evanescent field-... |
