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planqc is building neutral-atom quantum computers and seeks an experienced Opto-Mechanical Engineer to design mechanical, optomechanical and mechatronic components from sketch to prototyping and testing. You will partner with experimental physicists to turn requirements into manufacturable designs and manage part production with suppliers.
The role sits at the interface of physics, optics, electronics and software.
Your mission
At planqc, we are building scalable quantum computers based on neutral atoms. Our machines trap single atoms with laser light and control them with high precision. Even the smallest mechanical or thermal disturbance can affect a quantum computation. This makes the mechanical and optomechanical hardware around the atoms a core part of system performance.
As a (Senior) Opto-Mechanical Engineer, you will design mechanical, optomechanical and mechatronic components for our quantum computers. You take them from the first sketch through prototyping and testing to full maturity. You work with our experimental physicists to turn their requirements into stable, manufacturable designs. You also manage part production with our suppliers.
The role sits in our mechanical engineering department, at the interface of physics, optics, electronics and software. It suits an experienced engineer who thinks across disciplines, enjoys hands on work in the lab and wants to learn how neutral atom quantum computers work.
At planqc, you will work on one of the most promising quantum computing architectures alongside a highly driven and collaborative team spanning physics, engineering, and software.
We combine deep-tech research with an engineering mindset, turning scientific breakthroughs into scalable quantum systems.
If you're excited about designing the precision mechanics that keep neutral atom quantum computers stable, we'd love to hear from you.
planqc builds neutral-atom quantum computers based on arrays of optically trapped atoms controlled with high-precision laser systems. Our platform combines technologies from optical lattice clocks, quantum gas microscopes and fast Rydberg gates into a scalable computing architecture.
Founded in 2022 as a spin-off from MPQ and LMU Munich, we translate more than a decade of AMO research into deployable quantum systems. Our work spans vacuum and laser hardware, control electronics, firmware, system software and algorithm integration. We focus on turning complex experimental setups into stable, reproducible systems that operate in real computing environments.
Behind this technology is a team that pushes technical boundaries, values open exchange and shared ownership. Physicists, engineers, software developers and business specialists work closely together, often across disciplinary limits. We believe progress comes from combining deep expertise with practical engineering and from giving people the responsibility and trust to shape their domain.
As we grow across our locations in Garching, Ulm, and Innsbruck, we continue to build a company where people take ownership, learn from each other, and directly shape the systems we bring into operation.