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Operation of a silicon quantum processor unit cell above one kelvin 期刊论文
NATURE, 2020, 580 (7803) : 350-+
作者:  Han, Kyuho;  Pierce, Sarah E.;  Li, Amy;  Spees, Kaitlyn;  Anderson, Grace R.;  Seoane, Jose A.;  Lo, Yuan-Hung;  Dubreuil, Michael;  Olivas, Micah;  Kamber, Roarke A.;  Wainberg, Michael;  Kostyrko, Kaja;  Kelly, Marcus R.;  Yousefi, Maryam;  Simpkins, Scott W.;  Yao, David
收藏  |  浏览/下载:11/0  |  提交时间:2020/07/03

Quantum computers are expected to outperform conventional computers in several important applications, from molecular simulation to search algorithms, once they can be scaled up to large numbers-typically millions-of quantum bits (qubits)(1-3). For most solid-state qubit technologies-for example, those using superconducting circuits or semiconductor spins-scaling poses a considerable challenge because every additional qubit increases the heat generated, whereas the cooling power of dilution refrigerators is severely limited at their operating temperature (less than 100 millikelvin)(4-6). Here we demonstrate the operation of a scalable silicon quantum processor unit cell comprising two qubits confined to quantum dots at about 1.5 kelvin. We achieve this by isolating the quantum dots from the electron reservoir, and then initializing and reading the qubits solely via tunnelling of electrons between the two quantum dots(7-9). We coherently control the qubits using electrically driven spin resonance(10,11) in isotopically enriched silicon(12 28)Si, attaining single-qubit gate fidelities of 98.6 per cent and a coherence time of 2 microseconds during '  hot'  operation, comparable to those of spin qubits in natural silicon at millikelvin temperatures(13-16). Furthermore, we show that the unit cell can be operated at magnetic fields as low as 0.1 tesla, corresponding to a qubit control frequency of 3.5 gigahertz, where the qubit energy is well below the thermal energy. The unit cell constitutes the core building block of a full-scale silicon quantum computer and satisfies layout constraints required by error-correction architectures(8),(17). Our work indicates that a spin-based quantum computer could be operated at increased temperatures in a simple pumped He-4 system (which provides cooling power orders of magnitude higher than that of dilution refrigerators), thus potentially enabling the integration of classical control electronics with the qubit array(18,19).


  
Compounding climate change impacts during high stress periods for a high wind and solar power system in Texas 期刊论文
ENVIRONMENTAL RESEARCH LETTERS, 2020, 15 (2)
作者:  Craig, Michael T.;  Jaramillo, Paulina;  Hodge, Bri-Mathias;  Nijssen, Bart;  Brancucci, Carlo
收藏  |  浏览/下载:8/0  |  提交时间:2020/07/02
renewable energy  climate change  power system planning  thermal derating  climate change impacts  climate change adaptation  
Thermodynamic controls of the Western Tibetan Vortex on Tibetan air temperature 期刊论文
CLIMATE DYNAMICS, 2019, 53: 4267-4290
作者:  Li, Xiao-Feng;  Fowler, Hayley J.;  Yu, Jingjing;  Forsythe, Nathan;  Blenkinsop, Stephen;  Pritchard, David
收藏  |  浏览/下载:11/0  |  提交时间:2019/11/27
Western Tibetan Vortex  Karakoram vortex  Subtropical westerly Jet  Adiabatic heating  Thermal energy balance  Thermodynamic energy equation  
Aiming for mediocrity: The case of australian housing thermal performance 期刊论文
ENERGY POLICY, 2019, 132: 602-610
作者:  Moore, Trivess;  Berry, Stephen;  Ambrose, Michael
收藏  |  浏览/下载:7/0  |  提交时间:2019/11/27
Housing  NatHERS (Nationwide House Energy Rating Scheme)  Australia  Thermal performance  Energy efficiency  Regulations  
Observed Atmospheric and Surface Variability on Heterogeneous Terrain at the Hectometer Scale and Related Advective Transports 期刊论文
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2019, 124 (16) : 9407-9422
作者:  Simo, Gemma;  Cuxart, Joan;  Jimenez, Maria A.;  Martinez-Villagrasa, Daniel;  Picos, Rodrigo;  Lopez-Grifol, Alvaro;  Marti, Belen
收藏  |  浏览/下载:9/0  |  提交时间:2019/11/27
atmospheric and upper-soil variability  surface energy and water budgets  local thermal advection  station representativeness  humidity advection and evapotranspiration  hectometer scale  
Passive survivability of buildings under changing urban climates across eight US cities 期刊论文
ENVIRONMENTAL RESEARCH LETTERS, 2019, 14 (7)
作者:  Baniassadi, Amir;  Sailor, David J.;  Krayenhoff, E. Scott;  Broadbent, Ashley M.;  Georgescu, Matei
收藏  |  浏览/下载:11/0  |  提交时间:2019/11/27
climate change  urban warming  indoor thermal comfort  indoor heat exposure  building energy codes  building energy efficiency  regional climate simulation  
Measurement of effective energy consumption in China's rural household sector and policy implication 期刊论文
ENERGY POLICY, 2019, 128: 553-564
作者:  Niu, Shuwen;  Li, Zhen;  Qiu, Xin;  Dai, Runqi;  Wang, Xiang;  Qiang, Wenli;  Hong, Zhenguo
收藏  |  浏览/下载:10/0  |  提交时间:2019/11/26
Household energy consumption  Energy transition  Structure change  Effective energy  Thermal efficiency  
Field assessment of thermal comfort conditions and energy performance of social housing: The case of hot summers in the Mediterranean climate 期刊论文
ENERGY POLICY, 2019, 128: 377-392
作者:  Escandon, Rocio;  Suarez, Rafael;  Jose Sendra, Juan
收藏  |  浏览/下载:4/0  |  提交时间:2019/11/26
Social housing  Monitoring  Thermal comfort  Energy performance  Occupant behaviour  
Thermal insulation of rental residential housing: Do energy poor households benefit? A case study in Krems, Austria 期刊论文
ENERGY POLICY, 2019, 127: 341-349
作者:  Berger, Tania;  Hoeltl, Andrea
收藏  |  浏览/下载:1/0  |  提交时间:2019/11/26
Energy poverty  Residential buildings  Thermal insulation  Rent increase  Displacement  
Domestic thermal upgrades, community action and energy saving: A three-ear experimental study of prosperous households 期刊论文
ENERGY POLICY, 2019, 127: 475-485
作者:  Bardsley, Nicholas;  Buchs, Milena;  James, Patrick;  Papafragkou, Anastasios;  Rushby, Thomas;  Saunders, Clare;  Smith, Graham;  Wallbridge, Rebecca;  Woodman, Nicholas
收藏  |  浏览/下载:7/0  |  提交时间:2019/11/26
Household energy saving  Behaviour change  Field experiment  Rebound  Thermal upgrade  Community group