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[i][b]昆士蘭大學(xué)------量子物理----------碩士和博士---------位置[/b][/i]
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大家好,我是蘇黎世聯(lián)邦理工的一名在讀博士生,我的碩士論文導(dǎo)師Arkady去年收到澳大利亞的邀請在昆士蘭大學(xué)重新組建了一個實驗室。鑒于我碩士論文時期的優(yōu)異表現(xiàn),我的導(dǎo)師比較傾向于招收一些亞洲top大學(xué)的學(xué)生。 Arkady人非常好,我在他手下做了將近一年的時間。他是那種在歐洲非常常見的教授:懂得享受生活和做學(xué)問(沒有美國大學(xué)教授那么push),同時能在世界頂級雜志nature上發(fā)不少文章。 大家如果感興趣可以直接和他本人聯(lián)系。不必?fù)?dān)心占用他的時間,他今年沒課,歡迎騷擾。 聯(lián)系方式: a.fedorov@uq.edu.au Master and PhD positions in the University of Queensland, Australia For inquiry contact: Dr. Arkady Fedorov Address: School of Mathematics and Physics, The University of Queensland, Brisbane, QLD 4072, Australia, a.fedorov@uq.edu.au Job title: Master and PhD positions investigating quantum physics of microwave photons and artificial atoms based on superconducting circuits at the University of Queensland (UQ), Australia. Description: Starting 2013 we established a new lab at the Department of Physics at UQ, Brisbane, Australia (http://www.smp.uq.edu.au/physics). The lab will be also a part of EQuS Center (http://equs.org/) which combines efforts of the leading Australian groups (both experimental and theoretical) to engineer quantum technologies. We seek motivated Master and PhD students who will master fabrication and/or measurement techniques for quantum superconducting circuits to study of fundamentals of light-matter interaction with emphasis on application to quantum information processing. The prospective candidates are expected to have strong interest in: •quantum physics (solid state physics, quantum optics and quantum information) and at least in some of experimental techniques: •fabrication, •cryogenics and low-noise measurements. The research work will be conducted in the enthusiastic creative atmosphere and in tight collaboration with other members of EQuS Center. Background: Superconducting quantum circuits are artificial structures with a possibility to design and engineer their key properties. These unique features have made these engineered systems to be one of the most promising candidates for realizing a quantum computer in solid state, have allowed for exploration of quantum optical phenomena on-chip and have facilitated the implementation of a quantum control of a nanomechanical degree of freedom. Within the Centre for Engineered Quantum Structures we will establish fabrication and measurement techniques for the next generation of superconducting nanodevices consisting of superconducting qubits or artificial atoms, microwave transmission lines and high quality superconducting resonators. Procedure: Interested candidates are expected to apply for a scholarship to cover stipend and fees as required by the UQ admission policy. For further information, please, contact Dr. A. Fedorov for further details. |
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