Postdoctoral Research Assistant in Thermodynamics at the Nanoscale
University of Oxford, Oxford
Postdoctoral Research Assistant in Thermodynamics at the Nanoscale
£39424-£47779
University of Oxford, Oxford
- Full time
- Temporary
- Onsite working
Posted 3 weeks ago, 4 Jul | Get your application in now before you miss out!
Closing date: Closing date not specified
Job ref: ad259e8267ea4d7cbf9a7d924eda8c65
Location ref: Oxford
Full Job Description
Postdoctoral Research Assistant in Thermodynamics at the Nanoscale
central Oxford
We are seeking a motivated and Talented experimentalist for a full-time Research Assistant in Quantum Thermodynamics within Professor Ares' research group at the Department of Engineering Science (Central Oxford). The post is externally funded and is fixed-term appointment for 1 year.
Little is known about the thermodynamics of quantum devices evolving, fluctuating, and coupling to each other and to the environment. Classical thermodynamics has been established since the 19th century, while quantum thermodynamics is now a blossoming new field which could advance energy harvesting, the design of efficient on-chip nanomachines and refrigerators, as well as sensing techniques or innovative means of storing energy. Harnessing nanoscale circuits in the solid-state, my group is building platforms to study the efficiency and power of quantum engines and clocks, and the thermodynamic cost of quantum information processing, in an analogous way to how Landauer's bound was found for classical bit erasures. The appointed researcher will develop and characterize quantum devices, perform cryogenic experiments on quantum systems, and design novel experiments to investigate quantum thermodynamic processes.
Reporting to the Principal Investigator, you will help ensure a healthy and vibrant research environment within Natalia Ares's Research Group. You should possess a PhD/DPhil. You should possess the ability to develop new research projects and raise research funds through making grant applications. Excellent communication skills, including the ability to write for publication, present research proposals and results, and represent the research group at meetings is essential.
Responsibilities
- Develop and characterize quantum devices
- Perform cryogenic experiments on quantum systems
- Design novel experiments to investigate quantum thermodynamic processes
Requirements
- PhD/DPhil in a relevant field
- Ability to develop new research projects and raise funds through grant applications
- Excellent communication skills, including writing for publication, presenting proposals and results, and representing the research group at meetings
Informal enquiries may be addressed to Dr Natalia Ares (email: natalia.ares@eng.ox.ac.uk)
For more information about working at the Department, see
the Department's work with us information.
Only applications received before midday on the 31 July 2026 can be considered. You will be required to upload a covering letter/supporting statement (describing how past experience fit with the advertised position), CV and the details of two referees as part of your online application.
Job Details
- Contact Person: Natalia Ares
- Vacancy ID: 187420
- Contact Phone:
- Closing Date & Time: 31-Jul-2026 12:00
- Pay Scale: RESEARCH GRADE 7
- Contact Email: natalia.ares@eng.ox.ac.uk
- Salary (£): £39,424 - £47,779 per annum
#s1-Gen
We are seeking a motivated and Talented experimentalist for a full-time Research Assistant in Quantum Thermodynamics within Professor Ares' research group at the Department of Engineering Science (Central Oxford). The post is externally funded and is fixed-term appointment for 1 year.
Little is known about the thermodynamics of quantum devices evolving, fluctuating, and coupling to each other and to the environment. Classical thermodynamics has been established since the 19th century, while quantum thermodynamics is now a blossoming new field which could advance energy harvesting, the design of efficient on-chip nanomachines and refrigerators, as well as sensing techniques or innovative means of storing energy. Harnessing nanoscale circuits in the solid-state, my group is building platforms to study the efficiency and power of quantum engines and clocks, and the thermodynamic cost of quantum information processing, in an analogous way to how Landauer's bound was found for classical bit erasures. The appointed researcher will develop and characterize quantum devices, perform cryogenic experiments on quantum systems, and design novel experiments to investigate quantum thermodynamic processes.
Reporting to the Principal Investigator, you will help ensure a healthy and vibrant research environment within Natalia Ares's Research Group. You should possess a PhD/DPhil. You should possess the ability to develop new research projects and raise research funds through making grant applications. Excellent communication skills, including the ability to write for publication, present research proposals and results, and represent the research group at meetings is essential.