321 to 330 of 663 Results
Jul 14, 2022 - TONG Ping
Tong, Ping, 2022, "Replication Data for: Deep neural networks for creating reliable PmP database with a case study in southern California", https://doi.org/10.21979/N9/0O380V, DR-NTU (Data), V2
Southern California PmP phase data expanded by a deep learning technique PmPNet. |
Jul 13, 2022 - Anton VETLUGIN
Vetlugin, Anton, 2022, "Replication Data for: Deterministic generation of entanglement in a quantum network by coherent absorption of a single photon", https://doi.org/10.21979/N9/7EWOX1, DR-NTU (Data), V1, UNF:6:v+GZ+5zAAXaXPumwkpe37Q== [fileUNF]
Data for the paper "Deterministic generation of entanglement in a quantum network by coherent absorption of a single photon" |
Jul 8, 2022 - Kumar Abhishek
Kumar, Abhishek; Gupta, Manoj; Pitchappa, Prakash; Tan, Yi Ji; Wang, Nan; Singh, Ranjan, 2022, "Replication Data for: Topological sensor on a silicon chip", https://doi.org/10.21979/N9/NDBWOX, DR-NTU (Data), V1, UNF:6:YtPvcwy2l19op0LmCXIy4w== [fileUNF]
An ultrasensitive photonic sensor is vital for sensing matter with absolute specificity. High specificity terahertz photonic sensors are essential for many fields, including medical research, clinical diagnosis, security inspection and probing molecular vibrations in all forms of... |
Jun 29, 2022 - ZHANG Baile
Liu, Guigeng, 2022, "Replication Data for: Observation of weyl point pair annihilation in a gyromagnetic photonic crystal", https://doi.org/10.21979/N9/QTBDH7, DR-NTU (Data), V1, UNF:6:1TlSj/xTw0FxIxndHWPt8g== [fileUNF]
Replication Data for: Observation of weyl point pair annihilation in a gyromagnetic photonic crystal |
Jun 27, 2022 - Kumar Abhishek
Kumar, Abhishek; Gupta, Manoj; Pitchappa, Prakash; Tan, Thomas Caiwei; Chattopadhyay, Udvas; Ducournau, Guillaume; Wang, Nan; Chong, Yidong; Singh, Ranjan, 2022, "Replication Data for: Active Ultrahigh‐Q (0.2 × 106) THz Topological Cavities on a Chip", https://doi.org/10.21979/N9/2BSEXR, DR-NTU (Data), V1
Rapid scaling of semiconductor devices has led to an increase in the number of processor cores and integrated functionalities onto a single chip to support the growing demands of high-speed and large volume consumer electronics. This burgeoning demand for an ever-increasing on-ch... |
Jun 23, 2022 - Piyush AGARWAL
Agarwal, Piyush; Huang, Lisen; Lim, Sze Ter; Singh, Ranjan, 2022, "Replication Data for: Electric-field control of nonlinear THz spintronic emitters", https://doi.org/10.21979/N9/ZKGPGD, DR-NTU (Data), V1
Energy-efficient spintronic technology holds tremendous potential for the design of next-generation processors to operate at terahertz frequencies. Femtosecond photoexcitation of spintronic materials generates sub-picosecond spin currents and emission of terahertz radiation with... |
Jun 11, 2022 - MOE Tier 1 (RG12/17)
Tan, Hua, 2022, "Partial Nitridation‐Induced Electrochemistry Enhancement of Ternary Oxide Nanosheets for Fiber Energy Storage Device", https://doi.org/10.21979/N9/EKBRR5, DR-NTU (Data), V1
Herein, fiber‐shaped all‐solid‐state asymmetric energy storage devices are fabricated based on a partially nitridized NiCo2O4 hybrid nanostructures on graphite fibers (GFs). The surface nitridation leads to a 3D “pearled‐veil” network structure, in which Ni–Co–N nanospheres are m... |
Jun 11, 2022FAN Hongjin
(Project No.: A1983c0026) Magnetic-field assisted one-pot synthesis of Nickle-based nanowire arrays and membranes for high-performance electro-catalysts |
Jun 11, 2022 - MOE Tier 2-2017 - Noval Plasma
Chao, Dongliang, 2022, "A High‐Rate and Stable Quasi‐Solid‐State Zinc‐Ion Battery with Novel 2D Layered Zinc Orthovanadate Array", https://doi.org/10.21979/N9/8YLEB4, DR-NTU (Data), V1
Herein, the first paradigm of a high‐rate and ultrastable flexible quasi‐solid‐state zinc‐ion battery is constructed from a novel 2D ultrathin layered zinc orthovanadate array cathode, a Zn array anode supported by a conductive porous graphene foam, and a gel electrolyte. |
Jun 11, 2022 - MOE Tier 2-2017 - Noval Plasma
Chao, Dongliang, 2022, "C‐Plasma of Hierarchical Graphene Survives SnS Bundles for Ultrastable and High Volumetric Na‐Ion Storage", https://doi.org/10.21979/N9/RKXPEQ, DR-NTU (Data), V1
Here, an elegant and versatile strategy is developed to significantly extend the lifespan and rate capability of tin sulfide nanobelt electrodes while maintaining high areal and volumetric capacities. In this strategy, in situ bundles of robust hierarchical graphene (hG) are grow... |
