Computational RA: 2D Semiconductors & Quantum Transport

University of Nottingham
Nottingham
1 day ago
Create job alert

A renowned research institution in the UK is seeking a motivated Research Associate/Fellow in Modelling Electronic and Quantum Properties of 2D Semiconductors. You will conduct computational studies enhancing the efficiency of atomically thin semiconductors and work closely with academia and industry. A PhD in Chemistry or related field is essential, along with a strong computational chemistry background. The role offers an opportunity to impact the future of low-energy consumption electronics.
#J-18808-Ljbffr

Related Jobs

View all jobs

PhD in Computational Chemistry — ML-Accelerated Quantum Embedding

Postdoc in 2D Quantum Materials Transport & Spin Qubits

Fully funded 4-year PhD Studentship in Chemistry - Machine Learning-Accelerated Quantum Chemica[...]

Research Associate/Fellow in Modelling Electronic and Quantum Properties of 2D Semiconductors ([...]

Quantum Nanophotonics Research Fellow

Research Associate/Fellow in Modelling Electronic and Quantum Properties of 2D Semiconductors U[...]

Subscribe to Future Tech Insights for the latest jobs & insights, direct to your inbox.

By subscribing, you agree to our privacy policy and terms of service.

Industry Insights

Discover insightful articles, industry insights, expert tips, and curated resources.

What Hiring Managers Look for First in Quantum Computing Job Applications (UK Guide)

Quantum computing is one of the fastest-evolving fields in technology, blending physics, mathematics, computer science and engineering. Roles in this space — from Quantum Algorithm Developer and Quantum Software Engineer to Quantum Research Scientist and Quantum Hardware Specialist — are highly sought after, and hiring managers are exceptionally selective. Because quantum computing is complex and multidisciplinary, recruiters and hiring managers look for clear, concrete evidence of relevant expertise and impact right at the start of your application. They often decide whether to read your CV in detail within the first 10–20 seconds, based on a handful of high-value signals. This guide breaks down exactly what hiring managers look for first in quantum computing applications, how they assess CVs and portfolios, and what you can do to optimise your application to get noticed in the UK quantum job market.

Riverlane Jobs in Quantum Computing: UK Guide for Job Seekers (2026)

If you’re looking for Riverlane jobs in quantum computing, you’re aiming at one of the most important layers in the quantum stack: quantum error correction (QEC). In simple terms, Riverlane focuses on the software, methods & tooling that help quantum computers produce reliable results despite noise. That matters because as quantum hardware scales, the ability to correct errors becomes the difference between “interesting experiments” and “useful quantum computing”. This guide is written for UK job seekers who want to understand: what Riverlane does (in job-seeker language) the roles they hire for the skills that map best to their work how to tailor your CV & LinkedIn how to prepare for interviews how to find & land Riverlane vacancies in the UK You do not need to be a quantum PhD to have a realistic pathway in. But you do need to understand the problem they’re solving & position your experience around it.

The Skills Gap in Quantum Computing Jobs: What Universities Aren’t Teaching

Quantum computing stands at the frontier of technological innovation. Promising breakthroughs in areas as diverse as cryptography, materials discovery, optimisation and machine learning, quantum technologies are shifting from academic research to early commercial deployment. Governments, defence organisations, finance firms and tech innovators around the world — including in the UK — are investing heavily in quantum talent and capability. Yet despite this surge in interest and investment, employers consistently report a troubling trend: Many graduates with quantum computing qualifications are not prepared for real-world quantum computing jobs. This isn’t a reflection on students’ intelligence or effort. Rather, it reveals a persistent skills gap between what universities teach and what organisations actually need. In this article, we’ll explore that gap in depth — what universities do well, where programmes fall short, why the divide persists, what employers actually want, and how jobseekers can bridge that gap to build successful careers in quantum computing.