PhD

Application deadline: 

Wednesday, May 15, 2019

Are you a talented and ambitious researcher? Are you excited about quantum science and technology? Do you enjoy finding working solutions to great challenges? You are then welcome to apply for an open PhD position on "Multi-Qubit Quantum Photonic Devices" in our group at DTU Fotonik.

PhD/PostDoc Positions

Single atoms coupled to high-finesse optical cavities allow us to study light-matter interactions in the quantum regime. Full control over atoms and photons makes them ideal prototypes for quantum information science. Your thesis work will involve many aspects of quantum optics and quantum information processing: quantum networks, quantum memories, remote entanglement, quantum state transfer, quantized light fields, optical resonators, laser cooling and trapping of atoms.

A postdoc/PhD student position in Germany

A fully-funded postdoc/PhD student position is available to work at Peter Gruenberg Institute (PGI-2) in Forschungszentrum Juelich, near Aachen in Germany. For students the degree will be granted by RWTH university in Aachen. The researcher will work with Dr. Mohammad H. Ansari. The project can be started in the Summer or Fall 2017.

We are looking for talented and ambitious UK/EU graduates who wish to pursue a Ph.D. in Quantum Technologies and Quantum Foundations.

The successful candidate will work under the supervision of Dr. Vincenzo Tamma at the Physics Division at the University of Portsmouth, Prof. Gerardo Adesso at the School of Mathematical Sciences, University of Nottingham, and Prof. David Wands at the Institute of Cosmology and Gravitation, University of Portsmouth

Application deadline: 

Monday, August 29, 2016

We are searching for two highly motivated researchers to join us as Postdoctoral Fellows in the areas of Quantum Information Science and Quantum Foundations.

Application deadline: 

Thursday, September 15, 2016

PhD Project to implement spin qubits based on silicon-germanium structures

Center for Quantum Devices is offering a PhD scholarship commencing December 1. or as soon as possible thereafter.

The last year has seen tremendous advances in fabricating spin qubit devices from group IV semiconductors. This PhD project will investigate spin qubits realized in natural and isotopically purified silicon-germanium heterostructures. The objective is to create ultra-coherent qubit devices that can be controlled, coupled, and read out in a scalable geometry.

Application deadline: 

Friday, September 30, 2016

The Center for Quantum Devices and Station Q Copenhagen is looking to hire one or more PhD students to work on realizing superconducting multi-qubit devices to function as a small quantum computer. The realization will be based on gatemon technology controlled by FPGA-based waveform generators. Projects ranging from nanofabrication, device testing, to building classical control electronics are available.

Application deadline: 

Thursday, September 15, 2016

PhD Project to implement silicon-on-insulator Spin qubits

Center for Quantum Devices is offering a PhD scholarship commencing 1 December or as soon as possible thereafter.

Application deadline: 

Thursday, September 15, 2016

The Center for Quantum Devices and Station Q Copenhagen is looking to hire one or more PhD students to work on experimental implementation of majorana fusion rules and braiding of Majorana fermions. Applicants should have a background in Physics with either a Masters degree (for the regular PhD program), one year of Masters-level coursework (for the 4+4 PhD program), or an undergraduate degree in Physics from a US university (for the 3+5 PhD program).

Application deadline: 

Thursday, June 30, 2016

Center for Quantum Devices is offering a PhD scholarship commencing July 1. or as soon as possible thereafter.

The last year has seen tremendous advances in fabricating spin qubit devices from group IV semiconductors. This PhD project will investigate spin qubits realized in natural and isotopically purified silicon-germanium heterostructures. The objective is to create ultra-coherent qubit devices that can be controlled, coupled, and read out in a scalable geometry.

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