日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Integrated photonic source of Gottesman-Kitaev-Preskill qubits

Gottesman-Kitaev-Preskill量子比特的集成光子源

Larsen, M V; Bourassa, J E; Kocsis, S; Tasker, J F; Chadwick, R S; González-Arciniegas, C; Hastrup, J; Lopetegui-González, C E; Miatto, F M; Motamedi, A; Noro, R; Roeland, G; Baby, R; Chen, H; Contu, P; Di Luch, I; Drago, C; Giesbrecht, M; Grainge, T; Krasnokutska, I; Menotti, M; Morrison, B; Puviraj, C; Rezaei Shad, K; Hussain, B; McMahon, J; Ortmann, J E; Collins, M J; Ma, C; Phillips, D S; Seymour, M; Tang, Q Y; Yang, B; Vernon, Z; Alexander, R N; Mahler, D H

Scaling and networking a modular photonic quantum computer

模块化光子量子计算机的扩展和联网

Aghaee Rad, H; Ainsworth, T; Alexander, R N; Altieri, B; Askarani, M F; Baby, R; Banchi, L; Baragiola, B Q; Bourassa, J E; Chadwick, R S; Charania, I; Chen, H; Collins, M J; Contu, P; D'Arcy, N; Dauphinais, G; De Prins, R; Deschenes, D; Di Luch, I; Duque, S; Edke, P; Fayer, S E; Ferracin, S; Ferretti, H; Gefaell, J; Glancy, S; González-Arciniegas, C; Grainge, T; Han, Z; Hastrup, J; Helt, L G; Hillmann, T; Hundal, J; Izumi, S; Jaeken, T; Jonas, M; Kocsis, S; Krasnokutska, I; Larsen, M V; Laskowski, P; Laudenbach, F; Lavoie, J; Li, M; Lomonte, E; Lopetegui, C E; Luey, B; Lund, A P; Ma, C; Madsen, L S; Mahler, D H; Mantilla Calderón, L; Menotti, M; Miatto, F M; Morrison, B; Nadkarni, P J; Nakamura, T; Neuhaus, L; Niu, Z; Noro, R; Papirov, K; Pesah, A; Phillips, D S; Plick, W N; Rogalsky, T; Rortais, F; Sabines-Chesterking, J; Safavi-Bayat, S; Sazhaev, E; Seymour, M; Rezaei Shad, K; Silverman, M; Srinivasan, S A; Stephan, M; Tang, Q Y; Tasker, J F; Teo, Y S; Then, R B; Tremblay, J E; Tzitrin, I; Vaidya, V D; Vasmer, M; Vernon, Z; Villalobos, L F S S M; Walshe, B W; Weil, R; Xin, X; Yan, X; Yao, Y; Zamani Abnili, M; Zhang, Y

Quantum computational advantage with a programmable photonic processor

利用可编程光子处理器实现量子计算优势

Madsen, Lars S; Laudenbach, Fabian; Askarani, Mohsen Falamarzi; Rortais, Fabien; Vincent, Trevor; Bulmer, Jacob F F; Miatto, Filippo M; Neuhaus, Leonhard; Helt, Lukas G; Collins, Matthew J; Lita, Adriana E; Gerrits, Thomas; Nam, Sae Woo; Vaidya, Varun D; Menotti, Matteo; Dhand, Ish; Vernon, Zachary; Quesada, Nicolás; Lavoie, Jonathan

Alloy information helps prioritize material criticality lists

合金信息有助于确定材料关键性清单的优先级。

Graedel, T E; Reck, Barbara K; Miatto, Alessio

How Can Material Stock Studies Assist the Implementation of the Circular Economy in Cities?

物质存量研究如何帮助城市实施循环经济?

Wuyts, Wendy; Miatto, Alessio; Khumvongsa, Kronnaphat; Guo, Jing; Aalto, Pasi; Huang, Lizhen

Data on the domestic processed output, balancing items, and solid waste potential for five major world economies

五大世界经济体国内加工产品、平衡项目和固体废物潜力数据

Schandl, Heinz; Miatto, Alessio

New "Smart" Systems for Atmospheric Aerosol and Reactive Gas Sampling in Ambient Air

用于大气气溶胶和反应性气体采样的新型“智能”系统

Cristofanelli, Paolo; Busetto, Maurizio; Ronchi, Enrico; Miatto, Paolo; Marinoni, Angela; Calzolari, Francescopiero; Bonasoni, Paolo; Tagliafico, Luca A

Global socioeconomic material stocks rise 23-fold over the 20th century and require half of annual resource use

20世纪全球社会经济物质存量增长了23倍,需要消耗年度资源消耗量的一半。

Krausmann, Fridolin; Wiedenhofer, Dominik; Lauk, Christian; Haas, Willi; Tanikawa, Hiroki; Fishman, Tomer; Miatto, Alessio; Schandl, Heinz; Haberl, Helmut