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DOE支持的煤电厂CCS示范项目大部分以失败告终 快报文章
气候变化快报,2022年第02期
作者:  秦冰雪
Microsoft Word(16Kb)  |  收藏  |  浏览/下载:766/0  |  提交时间:2022/01/19
Department of Energy  Demonstration Projects  Carbon Capture and Storage  
ESA和Future Earth联合支持气候适应数据可视化项目 快报文章
气候变化快报,2020年第21期
作者:  刘燕飞
Microsoft Word(15Kb)  |  收藏  |  浏览/下载:432/0  |  提交时间:2020/11/05
European Space Agency  Future Earth  online demonstration tool  visualization  adaptation  climate hazard  
Observation of Bose-Einstein condensates in an Earth-orbiting research lab 期刊论文
NATURE, 2020, 582 (7811) : 103-+
作者:  Yamamoto, Keisuke;  Venida, Anthony;  Yano, Julian;  Biancur, Douglas E.;  Kakiuchi, Miwako;  Gupta, Suprit;  Sohn, Albert S. W.;  Mukhopadhyay, Subhadip;  Lin, Elaine Y.;  Parker, Seth J.;  Banh, Robert S.;  Paulo, Joao A.;  Wen, Kwun Wah;  Debnath, Jayanta;  Kim, Grace E.;  Mancias, Joseph D.;  Fearon, Douglas T.;  Perera, Rushika M.;  Kimmelman, Alec C.
收藏  |  浏览/下载:47/0  |  提交时间:2020/07/03

Quantum mechanics governs the microscopic world, where low mass and momentum reveal a natural wave-particle duality. Magnifying quantum behaviour to macroscopic scales is a major strength of the technique of cooling and trapping atomic gases, in which low momentum is engineered through extremely low temperatures. Advances in this field have achieved such precise control over atomic systems that gravity, often negligible when considering individual atoms, has emerged as a substantial obstacle. In particular, although weaker trapping fields would allow access to lower temperatures(1,2), gravity empties atom traps that are too weak. Additionally, inertial sensors based on cold atoms could reach better sensitivities if the free-fall time of the atoms after release from the trap could be made longer(3). Planetary orbit, specifically the condition of perpetual free-fall, offers to lift cold-atom studies beyond such terrestrial limitations. Here we report production of rubidium Bose-Einstein condensates (BECs) in an Earth-orbiting research laboratory, the Cold Atom Lab. We observe subnanokelvin BECs in weak trapping potentials with free-expansion times extending beyond one second, providing an initial demonstration of the advantages offered by a microgravity environment for cold-atom experiments and verifying the successful operation of this facility. With routine BEC production, continuing operations will support long-term investigations of trap topologies unique to microgravity(4,5), atom-laser sources(6), few-body physics(7,8)and pathfinding techniques for atom-wave interferometry(9-12).


  
Universal quantum logic in hot silicon qubits 期刊论文
NATURE, 2020, 580 (7803) : 355-+
作者:  Li, Jia;  Yang, Xiangdong;  Liu, Yang;  Huang, Bolong;  Wu, Ruixia;  Zhang, Zhengwei;  Zhao, Bei;  Ma, Huifang;  Dang, Weiqi;  Wei, Zheng;  Wang, Kai;  Lin, Zhaoyang;  Yan, Xingxu;  Sun, Mingzi;  Li, Bo;  Pan, Xiaoqing;  Luo, Jun;  Zhang, Guangyu;  Liu, Yuan;  Huang, Yu;  Duan, Xidong;  Duan, Xiangfeng
收藏  |  浏览/下载:62/0  |  提交时间:2020/07/03

Quantum computation requires many qubits that can be coherently controlled and coupled to each other(1). Qubits that are defined using lithographic techniques have been suggested to enable the development of scalable quantum systems because they can be implemented using semiconductor fabrication technology(2-5). However, leading solid-state approaches function only at temperatures below 100 millikelvin, where cooling power is extremely limited, and this severely affects the prospects of practical quantum computation. Recent studies of electron spins in silicon have made progress towards a platform that can be operated at higher temperatures by demonstrating long spin lifetimes(6), gate-based spin readout(7) and coherent single-spin control(8). However, a high-temperature two-qubit logic gate has not yet been demonstrated. Here we show that silicon quantum dots can have sufficient thermal robustness to enable the execution of a universal gate set at temperatures greater than one kelvin. We obtain single-qubit control via electron spin resonance and readout using Pauli spin blockade. In addition, we show individual coherent control of two qubits and measure single-qubit fidelities of up to 99.3 per cent. We demonstrate the tunability of the exchange interaction between the two spins from 0.5 to 18 megahertz and use it to execute coherent two-qubit controlled rotations. The demonstration of '  hot'  and universal quantum logic in a semiconductor platform paves the way for quantum integrated circuits that host both the quantum hardware and its control circuitry on the same chip, providing a scalable approach towards practical quantum information processing.


  
Nagaoka ferromagnetism observed in a quantum dot plaquette 期刊论文
NATURE, 2020, 579 (7800) : 528-533
作者:  Yu, Yong;  Ma, Fei;  Luo, Xi-Yu;  Jing, Bo;  Sun, Peng-Fei;  Fang, Ren-Zhou;  Yang, Chao-Wei;  Liu, Hui;  Zheng, Ming-Yang;  Xie, Xiu-Ping;  Zhang, Wei-Jun;  You, Li-Xing;  Wang, Zhen;  Chen, Teng-Yun;  Zhang, Qiang;  Bao, Xiao-Hui;  Pan, Jian-Wei
收藏  |  浏览/下载:50/0  |  提交时间:2020/07/03

A quantum dot device designed to host four electrons is used to demonstrate Nagaoka ferromagnetism-a model of itinerant magnetism that has so far been limited to theoretical investigation.


Engineered, highly controllable quantum systems are promising simulators of emergent physics beyond the simulation capabilities of classical computers(1). An important problem in many-body physics is itinerant magnetism, which originates purely from long-range interactions of free electrons and whose existence in real systems has been debated for decades(2,3). Here we use a quantum simulator consisting of a four-electron-site square plaquette of quantum dots(4) to demonstrate Nagaoka ferromagnetism(5). This form of itinerant magnetism has been rigorously studied theoretically(6-9) but has remained unattainable in experiments. We load the plaquette with three electrons and demonstrate the predicted emergence of spontaneous ferromagnetic correlations through pairwise measurements of spin. We find that the ferromagnetic ground state is remarkably robust to engineered disorder in the on-site potentials and we can induce a transition to the low-spin state by changing the plaquette topology to an open chain. This demonstration of Nagaoka ferromagnetism highlights that quantum simulators can be used to study physical phenomena that have not yet been observed in any experimental system. The work also constitutes an important step towards large-scale quantum dot simulators of correlated electron systems.


  
Beyond the Technology Pork Barrel? An assessment of the Obama administration's energy demonstration projects 期刊论文
ENERGY POLICY, 2018, 119: 367-376
作者:  Hart, David M.
收藏  |  浏览/下载:14/0  |  提交时间:2019/04/09
Demonstration projects  Energy innovation  Obama administration  US DOE  
Innovation in regulated electricity distribution networks: A review of the effectiveness of Great Britain's Low Carbon Networks Fund 期刊论文
ENERGY POLICY, 2018, 118: 121-132
作者:  Frame, Damien;  Hannon, Matthew;  Bell, Keith;  McArthur, Stephen
收藏  |  浏览/下载:22/0  |  提交时间:2019/04/09
Distribution Network Operators  Innovation  Electricity networks  Research, development and demonstration  
Demonstrating climate mitigation technologies: An early assessment of the NER 300 programme 期刊论文
ENERGY POLICY, 2018, 117: 100-107
作者:  Ahman, Max;  Skjaerseth, Jon Birger;  Eikeland, Per Ove
收藏  |  浏览/下载:12/0  |  提交时间:2019/04/09
Climate policy  Innovation  Demonstration programmes  EU ETS  NER 300  Innovation fund  NER 400  
Prospective improvements in cost and cycle life of off-grid lithium-ion battery packs: An analysis informed by expert elicitations 期刊论文
ENERGY POLICY, 2018, 114: 578-590
作者:  Few, Sheridan;  Schmidt, Oliver;  Offer, Gregory J.;  Brandon, Nigel;  Nelson, Jenny;  Gambhir, Ajay
收藏  |  浏览/下载:24/0  |  提交时间:2019/04/09
Lithium ion batteries  Electricity storage  Innovation  Research, development, and demonstration  Expert elicitation  Off-grid  
West Valley Demonstration Project Annual Site Environmental Report (ASER) for Calendar Year 2015 科技报告
来源:US Department of Energy (DOE). 出版年: 2016
作者:  Rendall, John D.;  Steiner, Alison F.;  Pendl, Michael P.;  Biedermann, Charles A.;  Steiner, II, Robert E.;  Fox, James R.;  Hoch, Jerald J.;  Wrotniak, Chester M.;  Werchowski, Rebecca L.
收藏  |  浏览/下载:37/0  |  提交时间:2019/04/05
West Valley Demonstration Project  WVDP  Annual Site Environmental Report  ASER  Calendar Year 2015  Ambient Air Samplers  Demolition  DOE/NYSERDA Consent Decree  Dose Assessment  Dose from Airborne Emissions  Dose from Waterborne Releases  Dose to Biota