81 to 90 of 531 Results
May 23, 2025 - HE Huajun
He, Huajun; Wang, Bo; Shen, Xuhai; Feng, Minjun; Rao, Haixia; Ye, Senyun; Nguyen, Linh Lan; Duchamp, Martial; Li, Shuzhou; Tian, He; Sum, Tze Chien, 2025, "Replication Data for: Aqueous Colloidal Perovskite Quantum Emitters", https://doi.org/10.21979/N9/8YTAAI, DR-NTU (Data), V1
Aqueous solutions of nanoparticles are the cornerstones for applications in diagnostics, catalysis and more, where control over the nanoparticle's dispersion is pivotal to tailoring the final product properties. Of late, halide perovskite nanocrystals (HPNCs) with outstanding opt... |
Apr 21, 2025 - CHENG Zheyu
Cheng, Zheyu, 2025, "Replication Data for: Observation of disorder-induced boundary localization", https://doi.org/10.21979/N9/NAQAYC, DR-NTU (Data), V1
This repository contains the data and code used for the analyses presented in the manuscript: "Observation of disorder-induced boundary localization", submitted to the Proceedings of the National Academy of Sciences (PNAS). |
Apr 12, 2025 - JIA Ridong
Jia, Ridong; Wang, Wenhao; Tan, Yi Ji; Shen, Zhonglei; Tan, Thomas Caiwei; Gu, Zhonghua; Pitchappa, Prakash; Singh, Ranjan, 2025, "Replication Data for: On-chip active supercoupled topological cavity", https://doi.org/10.21979/N9/FNAUX7, DR-NTU (Data), V1, UNF:6:XWpZ+KdpqAyeBRdEjV9BiQ== [fileUNF]
On-chip photonic resonant cavity plays a critical role in widespread applications including lasing, sensing, and spectroscopy. However, the excitation of these cavities typically relies on evanescent coupling within sub-wavelength distances, limiting flexible and precise chip int... |
Apr 11, 2025 - JIA Ridong
Jia, Ridong; Tan, Thomas Caiwei; Mishra, Sobhan Subhra; Wang, Wenhao; Tan, Yi Ji; Singh, Ranjan, 2025, "Replication Data for: On-chip active non-reciprocal topological photonics", https://doi.org/10.21979/N9/H9YR76, DR-NTU (Data), V1, UNF:6:TYaoe8enivC1djJ694EjSg== [fileUNF]
Chip-scale non-reciprocity is essential for advancing integrated photonics, particularly in realizing photonic circulators and isolators for data communication, signal modulation, and quantum computing. However, achieving a non-reciprocal silicon chip with a small footprint, high... |
Apr 9, 2025 - Rimi BANERJEE
Banerjee, Rimi; Mandal, Subhaskar; Terh, Yun Yong; Lin, Shuxin; Liu, Gui-Geng; Zhang, Baile; Chong, Yi Dong, 2024, "Replication Data for: Topological Disclination States and Charge Fractionalization in a Non-Hermitian Lattice", https://doi.org/10.21979/N9/JNAEGE, DR-NTU (Data), V2
Replication Data for "Topological Disclination States and Charge Fractionalization in a Non-Hermitian Lattice" |
Apr 4, 2025 - XU Zheng
Zheng, Xu; Chong, Yidong, 2025, "Replication Data for: Noise constraints for nonlinear exceptional point sensing", https://doi.org/10.21979/N9/PQGFFS, DR-NTU (Data), V1
Julia codes and numerical data for the paper "Noise constraints for nonlinear exceptional point sensing" |
Mar 9, 2025 - Rimi BANERJEE
Banerjee, Rimi, 2025, "Replication Data for: On-chip Amorphous Terahertz Topological Photonic Interconnects", https://doi.org/10.21979/N9/P8SWXN, DR-NTU (Data), V1
The data supporting the plots in the article. |
Feb 25, 2025 - TONG Ping
Tong, Ping, 2024, "Replication Data for: Multilevel trans-crustal magmatic system beneath the Geysers-Clear Lake area", https://doi.org/10.21979/N9/JPCTF9, DR-NTU (Data), V2
PmP traveltimes and the 3D P-wave velocity model for the Geysers-Clear Lake area |
Feb 24, 2025 - TONG Ping
Tong, Ping, 2025, "Replication Data for: Seismic Azimuthal Anisotropy of New Zealand revealed by Adjoint-state Traveltime Tomography", https://doi.org/10.21979/N9/QKU80S, DR-NTU (Data), V1
A 3D azimuthally anisotropic model that encompasses both the North and South Islands of New Zealand to a depth of 40 km, using over 1 million local P-wave arrival times and a newly developed adjoint-state traveltime tomography technique. |
Feb 22, 2025 - Bent WEBER
Aliyar, Thasneem; Ma, Hongyang; Krishnan, Radha; Singh, Gagandeep; Chong, Bi Qi; Wang, Yitao; Verzhbitskiy, Ivan; Wong, Calvin Pei Yu; Goh, Kuan Eng Johnson; Shen, Ze Xiang; Koh, Teck Seng; Rajib Rahman; Weber, Bent, 2025, "Final Data for: Symmetry Breaking and Spin−Orbit Coupling for Individual Vacancy-Induced In-Gap States in MoS2 Monolayers", https://doi.org/10.21979/N9/NPF4RD, DR-NTU (Data), V1
Final Data for: "Symmetry Breaking and Spin−Orbit Coupling for Individual Vacancy-Induced In-Gap States in MoS2 Monolayers" |
