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美研究分析联邦机构气候适应研究的优先事项和资助重点 快报文章
气候变化快报,2023年第17期
作者:  裴惠娟
Microsoft Word(16Kb)  |  收藏  |  浏览/下载:527/0  |  提交时间:2023/09/05
US  Federal Departments  Climate Action Plans  Research Priorities  
Spin-cooling of the motion of a trapped diamond 期刊论文
NATURE, 2020
作者:  Auer, Thomas O.;  Khallaf, Mohammed A.;  Silbering, Ana F.;  Zappia, Giovanna;  Ellis, Kaitlyn;  Alvarez-Ocana, Raquel;  Arguello, J. Roman;  Hansson, Bill S.;  Jefferis, Gregory S. X. E.;  Caron, Sophie J. C.;  Knaden, Markus;  Benton, Richard
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Coupling the spins of many nitrogen-vacancy centres in a trapped diamond to its orientation produces a spin-dependent torque and spin-cooling of the motion of the diamond.


Observing and controlling macroscopic quantum systems has long been a driving force in quantum physics research. In particular, strong coupling between individual quantum systems and mechanical oscillators is being actively studied(1-3). Whereas both read-out of mechanical motion using coherent control of spin systems(4-9) and single-spin read-out using pristine oscillators have been demonstrated(10,11), temperature control of the motion of a macroscopic object using long-lived electronic spins has not been reported. Here we observe a spin-dependent torque and spin-cooling of the motion of a trapped microdiamond. Using a combination of microwave and laser excitation enables the spins of nitrogen-vacancy centres to act on the diamond orientation and to cool the diamond libration via a dynamical back-action. Furthermore, by driving the system in the nonlinear regime, we demonstrate bistability and self-sustained coherent oscillations stimulated by spin-mechanical coupling, which offers the prospect of spin-driven generation of non-classical states of motion. Such a levitating diamond-held in position by electric field gradients under vacuum-can operate as a '  compass'  with controlled dissipation and has potential use in high-precision torque sensing(12-14), emulation of the spin-boson problem(15) and probing of quantum phase transitions(16). In the single-spin limit(17) and using ultrapure nanoscale diamonds, it could allow quantum non-demolition read-out of the spin of nitrogen-vacancy centres at ambient conditions, deterministic entanglement between distant individual spins(18) and matter-wave interferometry(16,19,20).


  
An exploration of the boundaries of 'community' in community renewable energy projects: Navigating between motivations and context 期刊论文
ENERGY POLICY, 2018, 113: 523-534
作者:  Hicks, Jarra;  Ison, Nicola
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Community renewable energy  Action research  
Wildlife Crime----Study for the ENVI Committee 科技报告
来源:Ecologic Institute (EU). 出版年: 2016
作者:  Dr. Stephan Sina;  Christiane Gerstetter;  Lucas Porsch;  Ennid Roberts LLM;  Lucy Olivia Smith;  Katharina Klaas
收藏  |  浏览/下载:61/0  |  提交时间:2019/04/05
wildlife crime  CITES  illegal wildlife trade  wildlife trafficking  EU Action Plan against Wildlife Trafficking  law enforcement  international cooperation  organized crime  money laundering  EU-TWIX database  Europe  literature review  online survey  desktop research and analysis  country studies  interviews  
Multi-level Governance and Partnership Practices in Development and Implementation of Sustainable Energy Action Plans (SEAP) 科技报告
来源:Ecologic Institute (EU). 出版年: 2016
作者:  Arne Riedel LLM
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Cities  Regions  Covenant of Mayors  Sustainable Energy Action Plans  SEAP  Multilateral Governance  Sustainable Funding  Best Practice Exchange  Europe  Interviews  Case Studies  Desk Research  
Project 57 Air Monitoring Annual Report - Fiscal Year 2013 (October 1, 2012 to September 30, 2013) 科技报告
来源:US Department of Energy (DOE). 出版年: 2014
作者:  Miller, Julianne J.;  McCurdy, Greg;  Mizell, Steve A
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The U.S. Department of Energy (DOE)  National Nuclear Security Administration  Nevada Field Office (NNSA/NFO) is currently working to achieve regulatory closure of radionuclide-contaminated Soils sites under its auspices. Corrective Action Unit (CAU) 415  Project 57 No. 1 Plutonium Dispersion Site is located in Emigrant Valley  Nevada  on Range 4808A of the Nevada Test and Training Range (NTTR)  and consists of one Corrective Action Site (CAS): NAFR-23-02  Pu Contaminated Soil. Closure plans being developed for the CAUs both on and off of the Nevada National Security Site (NNSS) may include postclosure monitoring for the possible release of radioactive contaminants. Determining the potential for transport of radionuclide-contaminated soils under ambient climatic conditions will facilitate an appropriate closure design and postclosure monitoring program. The DOE has authorized the Desert Research Institute (DRI) to conduct field assessments of potential transport of radionuclide-contaminated soil from the Project 57 site during ambient wind events. The assessment is intended to provide site-specific information on meteorological conditions that result in airborne soil particle redistribution  as well as determine which  if any  radiological contaminants may be entrained with the soil particles and estimate their concentrations.