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United States, Mountain View

Posted 11 days ago

Research Scientist, Device Theory, Quantum AI

🏢 Google

USD 141K - 202K per year

+3 benefits
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Role Type

🧪 Scientist / Researcher

Role Focus

🛠️ Advance Science

Seniority

🌿 Experienced
🌸 PhD / Postdoc

Employer Type

🏢 Industry

This Research Scientist role focuses on modeling and understanding the performance of superconducting qubit systems and associated control electronics. The scientist will simulate quantum gates and readout processes, including realistic environmental noise and hardware limitations. This role requires close collaboration with design and measurement teams to identify and model error sources, directly contributing to the development of next-generation qubits and control strategies necessary for building a large-scale, fault-tolerant quantum computer.

Key Responsibilities

Simulate single and two-qubit gates and readout processes for superconducting qubits, accounting for realistic environmental noise and AQFP control hardware constraints.

Propose and analyze novel gate and readout methods that are compatible with AQFP electronics.

Collaborate with design and measurement teams to model errors limiting Quantum Processing Unit performance and develop strategies for improvement.

Required Skills

3 years of experience in Quantum Computing.

Experience working with superconducting qubits.

Demonstrated ability through one or more scientific publications in conferences, journals, or public repositories.

Nice-to-have Skills

Experience with Circuit Quantum Electrodynamics (QED) or related components like transmon qubits, fluxonium qubits, or tunable couplers.

Experience performing flux/charge noise analysis.

Experience with collaborative software development processes.

Experience collaborating directly with experimentalists on quantum projects.

Understanding of two-qubit gates modeling and qubit readout modeling.

Technology Tags

Device modelling

The job title is "Research Scientist, Device Theory," and the responsibilities revolve around modeling qubit device performance.

Superconducting Circuits

The job focuses entirely on modeling, simulating, and improving superconducting qubit systems.

Qubits & gates

A primary responsibility is simulating and proposing new single and two-qubit gates and readout methods.

Control Tech

The role specifically models control electronics and AQFP hardware constraints for gates and readout.

Noise & benchmarking

The role involves incorporating realistic environmental noise and modeling errors limiting QPU performance.

Circuit QED

Experience with Circuit Quantum Electrodynamics is explicitly listed as a preferred qualification for device modeling.

Fault-tolerant

The ultimate goal of the research is to contribute strategies for building a large-scale, fault-tolerant quantum computer.

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