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Quantum Software Engineer

Specialized Hardware & Embedded Systems professional focused on authoring parameterized quantum circuits in qiskit, cirq, and pennylane for noisy intermediate-scale quantum (nisq) hardware and enterprise-grade execution.

HARDWARE_EMBEDDEDO*NET-SOC: 17-2072.00Seniority: entry · mid · seniorAliases: Quantum Computing Developer, Quantum Algorithm Programmer

Core Responsibilities

  • Execute and maintain production-grade solutions for Quantum Software Engineer
  • Collaborate with cross-functional engineering teams and uphold quality standards

Skills Weighting (Durable vs Perishable)

Embedded C & Bare-Metal Firmware Developmentcompetent proficiency
DURABLE
Real-Time Operating Systems (FreeRTOS / Zephyr)competent proficiency
DURABLE
Microcontroller Architecture (ARM Cortex-M / RISC-V)competent proficiency
DURABLE

Adjacent Career Transitions

Difficulty: 2/5~6-18 months

Robotics Controls Engineer

Domain specialization bridge from Quantum Software Engineer to Robotics Controls Engineer

View Target Role
Difficulty: 3/5~12-24 months

Embedded Software Engineer

Deep technical transition from Quantum Software Engineer into Embedded Software Engineer

View Target Role
Difficulty: 3/5~12-24 months

Engineering Manager

Transition from technical individual contribution in Quantum Software Engineer to engineering management

View Target Role
Difficulty: 3/5~18-36 months

Software Architect

Cross-system architectural boundaries beyond local Quantum Software Engineer scope

View Target Role

Frequently Asked Questions

What are the core technical competencies required for a Quantum Software Engineer?

A Quantum Software Engineer focuses on Authoring parameterized quantum circuits in Qiskit, Cirq, and Pennylane for noisy intermediate-scale quantum (NISQ) hardware; Implementing quantum error mitigation algorithms, dynamical decoupling, and pulse-level quantum control. Core responsibilities include: Execute and maintain production-grade solutions for Quantum Software Engineer, Collaborate with cross-functional engineering teams and uphold quality standards.

What distinguishes a Quantum Software Engineer from adjacent engineering roles?

Unlike adjacent roles, a Quantum Software Engineer is specifically NOT expected to handle: Unfocused generalist work without clear domain deliverables; Pure administrative coordination without technical ownership. Seniority tracks encompass entry, mid, senior levels.

What decision authority and hands-on technical ownership does a Quantum Software Engineer hold?

A Quantum Software Engineer holds primary decision authority over Quantum circuit transpilation pass configurations, qubit layout mapping and error mitigation strategies.. This role typically maintains an estimated 80% hands-on technical focus with low customer exposure and moderate ambiguity tolerance.

What are the typical promotion ladders and career mobility pathways from Quantum Software Engineer?

Progression within Quantum Software Engineer spans entry → mid → senior seniority tiers. Common adjacent lateral and vertical mobility targets include: Embedded Software Engineer, Firmware Engineer, Software Engineer.

How are compensation benchmarks evaluated for a Quantum Software Engineer?

Salaries for Quantum Software Engineer are aggregated from verified statutory and market reports across 6 tech hubs, normalized with k ≥ 5 cohort suppression to preserve privacy, and evaluated across P10 to P90 percentiles.

Which international visa pathways apply to a Quantum Software Engineer?

Qualifying roles in this family align with statutory shortage criteria under frameworks such as the Germany EU Blue Card (§ 18g AufenthG) and Netherlands Highly Skilled Migrant regulations (Kennismigrant), using official O*NET-SOC (17-2072.00) and ESCO/ISCO-08 classifications.

AI Summary

Quantum Software Engineer: Core role responsible for authoring parameterized quantum circuits in qiskit, cirq, and pennylane for noisy intermediate-scale quantum (nisq) hardware, decision authority over quantum circuit transpilation pass configurations, qubit layout mapping and error mitigation strategies., and cross-team execution.