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Quantum Computing Engineer Remote Jobs in Oregon

Quantum Computing Cryptography Engineer

OR · On-site +1

$82K - $109K/yr

The Quantum Computing/Cryptography Engineer will provide specialized engineering and technical expertise in quantum computing, cryptography, post-quantum cryptography (PQC), and cryptographic ...

Senior HPC and Quantum Systems Engineer

OR · On-site +1

$104K - $142K/yr

NVIDIA has been transforming computer graphics, PC gaming, and accelerated computing for more than ... We are seeking a Senior HPC & Quantum Systems Engineer to help architect, deploy, and operate a ...

Senior Engineer - Quantum Error Correction Libraries

OR · On-site +1

$122K - $161K/yr

NVIDIA's accelerated computing platform has revolutionized HPC and AI, and we have built the cuQuantum SDK to enable quantum computing researchers and framework developers. This role will be part of ...

... computing Engaging with quantum hardware partners, research institutions, and developers to ... identify high-value applications of AI across quantum system design, control, calibration ...

NVIDIA's Quantum Computing team is searching for an outstanding software engineer to build the toolchain of the future. Join us in developing the CUDA-Q platform for programming powerful hybrid ...

Senior Site Reliability Engineer- Remote

OR · On-site +1

$57 - $75.75/hr

You will be leveraging your software engineering expertise to develop software platforms and tools ... Strong knowledge of cloud computing platforms such as AWS, Azure, or Google Cloud Platform.

Senior Software Architect, AI Systems and Networking

OR · On-site +1

$129K - $175K/yr

The team's charter expands into emerging domains including quantum computing interconnects. The ... The work lives at the boundary of applied research and production engineering. What you will be ...

The team's charter expands into emerging domains including quantum computing interconnects. This ... CUDA programming and NVIDIA GPU architecture expertise. Proved experience influencing product ...

The team's charter expands into emerging domains including quantum computing interconnects. This ... Proficiency in programming languages such as C, C++, Rust and Python. Ways to stand out from the ...

Senior Product Manager, cuEST and cuEquivariance

OR · On-site +1

$126K - $166K/yr

... with quantum chemistry, atomistic simulation and AI Strong technical foundation in GPU computing, CUDA, or parallel programming models Excellent communication and presentation skills, with the ...

Senior Math Libraries Engineer - Dense Linear Algebra

OR · On-site +1

$100K - $136K/yr

... quantum chemistry, autonomous vehicles, LLMs, computer vision, encryption, and countless others ... Ideal candidates will not only have experience developing accelerated computing kernels, but also ...

Solutions Architect - Drug Discovery

OR · On-site +1

$63 - $83/hr

... computing platform, models and libraries. Our Solutions Architects are elite developers, scientists ... Hands-on experience applying ML to at least one of these domains: genomics, quantum chemistry ...

Senior Architect

OR · On-site +1

... quantum chemistry workflows. Experience architecting scientific software, developer platforms, or ... by advanced computing. You will contribute to crafting tools that support researchers, partners ...

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Quantum Computing Engineer Remote information

What does a quantum computing engineer do when working remotely?

A Quantum Computing Engineer working remotely designs, develops, and tests algorithms and software that leverage quantum computers, often collaborating with teams using virtual tools. They may focus on quantum programming, error correction, or integrating quantum solutions with classical systems. Remote engineers access quantum hardware through cloud-based platforms, participate in research, and stay current with advancements in quantum technology. Effective communication and self-management skills are essential for success in this remote role.

What are the key skills and qualifications needed to thrive as a quantum computing engineer remote?

A Quantum Computing Engineer requires strong knowledge in quantum mechanics, computer science, and mathematics, often supported by a degree in physics, engineering, or a related field. Familiarity with quantum programming languages (such as Qiskit or Cirq), cloud-based quantum platforms, and proficiency in Python are typically necessary, and certifications in quantum computing can be advantageous. Excellent problem-solving skills, self-motivation, and effective remote communication are essential soft skills for success in a distributed team environment. These competencies enable engineers to develop innovative quantum algorithms, collaborate efficiently, and drive advancements in this rapidly evolving field.

What are the typical collaboration dynamics for a remote quantum computing engineer, and how do teams coordinate on complex projects?

As a remote Quantum Computing Engineer, you’ll typically work as part of a multidisciplinary team that may include physicists, software developers, and hardware engineers. Collaboration often relies on version control systems, virtual meetings, and shared documentation platforms to coordinate complex research and development tasks. Regular syncs, code reviews, and agile methodologies are commonly used to ensure everyone stays aligned despite geographic distances. Effective communication and a proactive approach to problem-solving are key, as much of the work involves iterative testing and collective troubleshooting. This structure allows for both deep individual focus and consistent team progress on groundbreaking projects.

What is the difference between Quantum Computing Engineer Remote vs Quantum Software Developer?

AspectQuantum Computing Engineer RemoteQuantum Software Developer
Required CredentialsBachelor's or Master's in Physics, Computer Science, or related field; knowledge of quantum algorithmsBachelor's or Master's in Computer Science or related; programming skills in quantum languages
Work EnvironmentRemote, often collaborative with research teams or tech companiesRemote or on-site, focused on developing and testing quantum software
Employer & Industry UsageTech companies, research labs, startups in quantum techSoftware firms, tech companies, research institutions

While both roles involve quantum computing, Quantum Computing Engineers Remote focus on designing and developing quantum hardware and algorithms, whereas Quantum Software Developers primarily create software applications and simulations. Both roles often require similar educational backgrounds and can be performed remotely, but their core responsibilities differ in hardware versus software development within the quantum industry.

What are the most commonly searched types of Quantum Computing Engineer jobs in Oregon?

The most popular types of Quantum Computing Engineer jobs in Oregon are:

What are popular job titles related to Quantum Computing Engineer Remote jobs in Oregon?

For Quantum Computing Engineer Remote jobs in Oregon, the most frequently searched job titles are:

What job categories do people searching Quantum Computing Engineer Remote jobs in Oregon look for?

The top searched job categories for Quantum Computing Engineer Remote jobs in Oregon are:

What cities in Oregon are hiring for Quantum Computing Engineer Remote jobs?

Cities in Oregon with the most Quantum Computing Engineer Remote job openings:

Quantum Computing Cryptography Engineer

OR • On-site, Remote

$82K - $109K/yr

Full-time

Posted 6 days ago


Job description

Team (Project) Introduction

We are recruiting for a range of cybersecurity opportunities supporting federal customers, focused on strengthening enterprise security architecture, systems engineering, and the secure implementation of technologies across the environment.

The work involves applying established cybersecurity standards, guidelines, and frameworks to help translate organizational and business requirements into secure, scalable technical solutions. Team members may contribute to security architecture and engineering efforts, implementation guidance, technical analysis, and the development of repeatable approaches that support the consistent deployment and operation of secure technologies across complex enterprise environments.

Systems security engineering is an important component of this work, with an emphasis on incorporating security and stakeholder protection requirements throughout the system development life cycle, from concept and design through development, production, sustainment, and decommissioning. The team will apply established systems engineering and cybersecurity principles to help protect systems, applications, data, and supporting technologies.

Ultimately, this work supports the broader mission to strengthen its cybersecurity posture, reduce organizational risk, and protect critical systems and information from evolving cyber threats, including external adversaries and insider threats.

9th Way Insignia is looking for an Engineer, 3, Quantum Computing/Cryptography Engineer to join this team.
Professional Level Information:
An Engineer, 3 typically plans and directs research or development work on complex projects, along with engaging various parties in design and development. Costs and recommendations of new components may also involve part of the job scope. Performs multiple engineering-related tasks in various assignments within the project and firm. An Engineer, 3 oversees the design, development, implementation, and analysis of technical products and systems.  An Engineer, 3 has broad knowledge of engineering procedures and assists in the resolution of complex problems.  An Engineer, 3 has strong technical skills and background, a knack for learning new technologies, and a blend of good problem-solving and innovation needed to resolve a wide variety of technical production challenges.

Functional Job (LCAT) Information:
The Quantum Computing/Cryptography Engineer will provide specialized engineering and technical expertise in quantum computing, cryptography, post-quantum cryptography (PQC), and cryptographic modernization in support of the VA program. The engineer will assess existing cryptographic technologies, evaluate quantum-related cybersecurity risks, and develop strategies for transitioning VA systems and applications to secure, quantum-resistant cryptographic standards.


Responsibilities:

  • Provide technical expertise in quantum computing, quantum information science, cryptography, and post-quantum cryptography to support VA cybersecurity architecture and engineering initiatives.
  • Analyze the potential cybersecurity impact of quantum computing technologies on existing VA systems, applications, infrastructure, data protections, and cryptographic implementations.
  • Apply knowledge of quantum mechanics, quantum information theory, and quantum algorithms, including algorithms such as Shor's and Grover's algorithms, to evaluate current and emerging cryptographic risks.
  • Assess existing cryptographic implementations, protocols, algorithms, certificates, keys, and supporting technologies to identify systems that may be vulnerable to current or future quantum-enabled threats.
  • Develop and maintain an enterprise cryptographic inventory identifying cryptographic algorithms, protocols, implementations, dependencies, technologies, and systems across the VA environment.
  • Analyze the cryptographic inventory and establish risk-based migration priorities based on mission criticality, data sensitivity, cryptographic exposure, technology dependencies, and emerging quantum threats.
  • Develop and maintain Cryptographic Inventory and Migration Plans defining strategies, timelines, sequencing, and priorities for transitioning VA systems to approved cryptographic standards, including post-quantum cryptography where applicable.
  • Develop and recommend Post-Quantum Cryptography migration strategies that enable the VA to transition from existing cryptographic approaches to quantum-resistant algorithms in a controlled and secure manner.
  • Provide technical guidance for cryptographic modernization aligned with applicable NIST post-quantum cryptography standards, including FIPS 203, FIPS 204, and FIPS 205.
  • Evaluate and recommend quantum-resistant cryptographic algorithms and technologies for use within enterprise systems, applications, networks, cloud environments, data protection solutions, and identity infrastructures.
  • Provide subject matter expertise in traditional cryptographic protocols and technologies, including RSA, AES, public-key cryptography, Public Key Infrastructure (PKI), encryption, digital signatures, key management, and related security mechanisms.
  • Evaluate interoperability, compatibility, implementation complexity, performance, security, and operational impacts associated with replacing or upgrading legacy cryptographic technologies.
  • Identify cryptographic dependencies and potential migration challenges across applications, infrastructure, network technologies, cloud platforms, identity systems, security tools, and enterprise services.
  • Support the development of crypto-agile architectures and engineering approaches that enable cryptographic algorithms and technologies to be replaced or upgraded as standards and threats evolve.
  • Perform technical analysis, prototyping, modeling, and testing using classical and quantum simulation tools to evaluate quantum algorithms, cryptographic techniques, and potential security impacts.
  • Develop, implement, and test cryptographic algorithms and related engineering solutions using programming languages such as Python, C++, and Java.
  • Utilize quantum development languages, frameworks, and platforms such as Qiskit, Cirq, Quipper, and the Microsoft Quantum Development Kit to support research, simulation, testing, and technical analysis.
  • Conduct specialized security posture assessments for Post-Quantum Cryptography and other emerging technologies, documenting risks, vulnerabilities, technology implications, and recommended mitigation strategies.
  • Support security architecture reviews and engineering assessments to identify cryptographic weaknesses, architectural gaps, security risks, attack paths, and residual risk associated with existing and proposed systems.
  • Develop technical recommendations for mitigating cryptographic vulnerabilities and reducing exposure to "harvest now, decrypt later" and other quantum-related cybersecurity risks where supported by applicable VA risk assessments and modernization activities.
  • Support development of secure solution architectures, security patterns, reference architectures, and engineering guidance incorporating modern and post-quantum cryptographic protections.
  • Ensure cryptographic solutions and modernization recommendations align with applicable Federal security standards, VA security requirements, NIST guidance, and enterprise cybersecurity architecture.
  • Provide technical input into VA security policies, engineering standards, cryptographic guidance, modernization plans, and governance documentation.
  • Participate in technical design reviews, architecture reviews, modernization initiatives, pilots, engineering working groups, and governance forums requiring cryptography or quantum computing subject matter expertise.
  • Collaborate with cybersecurity architects, security engineers, application teams, cloud engineers, DevSecOps personnel, network engineers, identity teams, program managers, and Government stakeholders to coordinate cryptographic modernization and PQC migration activities.
  • Communicate complex quantum computing and cryptographic risks in clear business and mission terms to technical teams, program leadership, and non-technical executives.
  • Develop technical assessments, white papers, implementation recommendations, risk analyses, briefings, and presentations addressing quantum risk, cryptographic posture, migration readiness, and modernization priorities.
  • Track emerging quantum-computing capabilities, cryptographic technologies, and evolving standards to identify potential impacts to the VA enterprise and recommend appropriate engineering or modernization actions.
  • Support project and lifecycle management activities associated with cryptographic modernization, including requirements development, configuration management, risk tracking, implementation planning, and transition sequencing.
  • Core Role Focus
  • May require occasional on-site visits

Requirements:

  • Minimum of 10 years IT experience of which at least 5 years are of Quantum Computing and Cryptography experience at a large corporation or Government agency similar in size/scope to GSA, IRS, DoD or VA. 
  • A Master's degree in a related IT field may substitute for up to 2 years of the required experience 
  • Expertise in quantum mechanics, quantum algorithms (e.g., Shor's algorithm, Grover's algorithm), and quantum information theory. 
  • Expertise in quantum programming languages and frameworks such as Qiskit (IBM), Cirq (Google), Quipper, and Microsoft Quantum Development Kit  
  • Expertise in cryptographic protocols (e.g., RSA, AES) and principles of public-key infrastructure (PKI). 
  • Expertise in post-quantum cryptography and quantum-resistant algorithms. 
  • Expertise in existing cryptographic standards and frameworks (e.g., NIST, ISO/IEC 19790). 
  • Proficiency in programming languages such as Python, C++, and Java for implementing and testing cryptographic algorithms. 
  • Expertise with classical and quantum simulation tools. 
  • Expertise working with and advising on quantum-resistant algorithm migration plans and post-quantum cryptography (PQC) implementation strategies. Expertise assessing organizational cryptographic inventory and identifying migration priorities. Expertise collaborating with cross-functional teams to communicate quantum risk to non-technical leadership. Experience providing policy and guidance inputs for cryptographic modernization aligned with NIST PQC standards (FIPS 203, 204, 205). 
  • Expertise in project management or working in a project-oriented environment, with an understanding of how configuration management fits into the overall project lifecycle within a large corporation and Government agency similar in size/scope to GSA, IRS, DoD or VA. 

Preferred/Desired:

  • Bachelor's degree in Business Administration, Business Management, Cybersecurity, Computer Science, Information Systems, Information Assurance, Information Security, Information Resource Management, or related fields. 
  • CASP+ (SecurityX), CCISO, CISA, CISM, CISSP, CISSP-ISSAP, CISSP-ISSEP, GCED, GCIH, GSLC, CCNP Security