Senior Software Engineer, Transport
Requirements
Requires strong proficiency in systems programming languages like Rust or C++ and experience with performance-sensitive computing. Candidates should have a background in numerical programming with Python and the ability to work in a fast-paced, cross-disciplinary environment.
Job Description
The Role:
We are looking for a Senior Software Engineer to join our Transport Software team at IonQ, based in our Oxford office. In this role you will work with physicists to develop ion trap control software, guiding the trajectories of hundreds to thousands of ions in parallel using electromagnetic fields. This will directly contribute to the team's mission of scaling the computational capacity of our trapped-ion quantum computers.
This role will play a central role in shaping the control software that supports our work in building the world's most advanced quantum systems.
Responsibilities:
In this position, you will develop our framework for describing ion transport constraints and, in combination with an electromagnetic model of the ion trap, synthesise voltage waveform data to drive hundreds to thousands of independent DAC channels, with runtime parametrisation to enable closed-loop calibration and mid-circuit feedforward.
You will have the opportunity to accelerate the design and analysis of transport waveforms for trapped-ion quantum computers, and to develop the high-performance data pipelines required to control ion traps of this size and complexity, contributing directly to our roadmap for utility-scale quantum computing.
Key responsibilities include:
- Building the framework that transforms high-level ion transport specifications into voltage waveform data and readies it for runtime execution.
- Supporting the transport waveform team in developing new solvers and physics simulations as components in this framework.
- Collaborating with experimental and theoretical scientists to understand their requirements for experiment and simulation.
- Contributing to the design of transport operations used for quantum circuits, and how they are parametrised and calibrated.
- Interfacing with runtime, non-real-time control, FPGA and electronics teams to shape the overall system architecture.
Requirements:
To be successful you will need strong programming skills in a systems programming language, experience with performance-sensitive computing, and a desire to produce high-quality code appropriate to control software deployed in production. We are looking for someone who can build and iterate on high-performance code in a collaborative, cross-disciplinary environment and contribute effectively within a fast moving, highly technical team.
You'd be a great fit with:
- Familiarity with mathematics and experience with numerical programming, such as in Python.
- Experience with a systems programming language like Rust or C++. We use Rust in our systems, experience of this language is not essential but a desire to learn it is beneficial.
- Excellent communication skills both within the context of software and across disciplines.
- Experience producing and maintaining high-quality code in a production context.
- Being comfortable with rapidly evolving requirements, and eager to learn and develop your skills.
Skills
About Oxford Ionics
The future is quantum. Oxford Ionics is an IonQ company at the forefront of pioneering quantum computing, delivering world-leading innovation to create the most powerful, accurate, and reliable quantum systems. Quantum computing offers a radically new way of building computers that harnesses the power of quantum physics to outperform conventional supercomputers exponentially. Using our unique trapped-ion technology, we are leading the race to unleash quantum computing's unparalleled potential. Our mission is to revolutionise quantum computing by harnessing the unrivalled precision of trapped-ion technology. We are building the world's most powerful, accurate, and reliable quantum systems, which will address the world's most important, once impossible-to-solve problems. We are committed to pushing the boundaries of science and shaping the future of quantum. Our goal is to create scalable, accessible, and noiseless quantum technology.
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