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Direct Assimilation of Radar Data with Ensemble Kalman Filter and Hybrid Ensemble‐Variational Method in the National Weather Service Operational Data Assimilation System GSI for the Stand‐Alone Regional FV3 Model at a Convection‐Allowing Resolution 期刊论文
Geophysical Research Letters, 2020
作者:  Chong‐;  Chi Tong;  Youngsun Jung;  Ming Xue;  Chengsi Liu
收藏  |  浏览/下载:7/0  |  提交时间:2020/09/30
Find My Friends in a Pandemic: The Future of Contact Tracing in America 科技报告
来源:Center for Strategic & International Studies. 出版年: 2020
作者:  Anna Carroll
收藏  |  浏览/下载:21/0  |  提交时间:2020/05/13
Assimilation of radar radial velocity data with the WRF hybrid 4DEnVar system for the prediction of hurricane Ike (2008) 期刊论文
ATMOSPHERIC RESEARCH, 2020, 234
作者:  Shen, Feifei;  Xu, Dongmei;  Min, Jinzhong;  Chu, Zhigang;  Li, Xin
收藏  |  浏览/下载:7/0  |  提交时间:2020/07/02
Radial velocity data  WRF data assimilation  4DEnVar  Numerical simulation  
Addressing Unresolved Challenges in U.S.-Russia Relations 科技报告
来源:Center for Strategic & International Studies. 出版年: 2020
作者:  admin
收藏  |  浏览/下载:5/0  |  提交时间:2020/05/13
Experts React: COVID-19 Impacts the Energy Sector 科技报告
来源:Center for Strategic & International Studies. 出版年: 2020
作者:  admin
收藏  |  浏览/下载:13/0  |  提交时间:2020/05/13
Coherent electrical control of a single high-spin nucleus in silicon 期刊论文
NATURE, 2020, 579 (7798) : 205-+
作者:  Dedoussi, Irene C.;  Eastham, Sebastian D.;  Monier, Erwan;  Barrett, Steven R. H.
收藏  |  浏览/下载:10/0  |  提交时间:2020/07/03

Nuclear spins are highly coherent quantum objects. In large ensembles, their control and detection via magnetic resonance is widely exploited, for example, in chemistry, medicine, materials science and mining. Nuclear spins also featured in early proposals for solid-state quantum computers(1) and demonstrations of quantum search(2) and factoring(3) algorithms. Scaling up such concepts requires controlling individual nuclei, which can be detected when coupled to an electron(4-6). However, the need to address the nuclei via oscillating magnetic fields complicates their integration in multi-spin nanoscale devices, because the field cannot be localized or screened. Control via electric fields would resolve this problem, but previous methods(7-9) relied on transducing electric signals into magnetic fields via the electron-nuclear hyperfine interaction, which severely affects nuclear coherence. Here we demonstrate the coherent quantum control of a single Sb-123 (spin-7/2) nucleus using localized electric fields produced within a silicon nanoelectronic device. The method exploits an idea proposed in 1961(10) but not previously realized experimentally with a single nucleus. Our results are quantitatively supported by a microscopic theoretical model that reveals how the purely electrical modulation of the nuclear electric quadrupole interaction results in coherent nuclear spin transitions that are uniquely addressable owing to lattice strain. The spin dephasing time, 0.1 seconds, is orders of magnitude longer than those obtained by methods that require a coupled electron spin to achieve electrical driving. These results show that high-spin quadrupolar nuclei could be deployed as chaotic models, strain sensors and hybrid spin-mechanical quantum systems using all-electrical controls. Integrating electrically controllable nuclei with quantum dots(11,12) could pave the way to scalable, nuclear- and electron-spin-based quantum computers in silicon that operate without the need for oscillating magnetic fields.