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Quantum Computing Research Remote Jobs (NOW HIRING)

Quantum Computing Coach

$17 - $22/hr

We're seeking an experienced quantum computing coach to work with students and professionals ... quantum research and academia. Coaches also support the career side of the journey, including ...

AI is rapidly emerging as a critical technology for advancing quantum computing, and this role sits their intersection, requiring the ability to translate advances in AI and quantum research into ...

AI is rapidly emerging as a critical technology for advancing quantum computing, and this role sits their intersection, requiring the ability to translate advances in AI and quantum research into ...

Approval of remote and hybrid work is not guaranteed regardless of work location.For additional ... We seek candidates who will conduct innovative research at the intersection of quantum computing ...

... research organizations. * Experience with quantum optimization (QUBOs), QAOA, VQE, or quantum machine learning. * Familiarity with high-performance computing (HPC), GPU computing, or hybrid computing ...

... research organizations. * Experience with quantum optimization (QUBOs), QAOA, VQE, or quantum machine learning. * Familiarity with high-performance computing (HPC), GPU computing, or hybrid computing ...

$126K/yr

Technology, R&D Reports to: CTO About Us Quantum Computing Inc. (QCi) (Nasdaq: QUBT) is an ... remote sensing applications. Position Description We are seeking a Postdoctoral Researcher in ...

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Quantum Computing Research Remote information

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How much do quantum computing research remote jobs pay per hour?

As of Sep 4, 2026, the average hourly pay for quantum computing research remote in the United States is $22.22, according to ZipRecruiter salary data. Most workers in this role earn between $17.31 and $23.80 per hour, depending on experience, location, and employer.

What is a quantum computing researcher?

Quantum Computing Research Remote jobs involve conducting research and development in quantum computing while working from a remote location, rather than in a traditional office or laboratory. Professionals in these roles explore quantum algorithms, hardware, and software, and may collaborate with teams virtually across the globe. They often contribute to advancing quantum technologies, publish research findings, and develop new applications in areas like cryptography, optimization, and machine learning. These positions typically require a strong background in physics, computer science, or related fields, and proficiency in programming languages commonly used in quantum computing.

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

To excel as a Quantum Computing Researcher (Remote), you typically need an advanced degree in physics, computer science, or a related field, with a deep understanding of quantum mechanics and algorithms. Familiarity with quantum programming languages (like Qiskit or Cirq), simulation tools, and experience with cloud-based quantum platforms are highly valuable. Strong problem-solving skills, self-motivation, and effective virtual communication are crucial soft skills for remote research collaboration. These competencies enable researchers to drive innovation, overcome complex challenges, and effectively contribute to global teams in a rapidly evolving field.

What are some typical challenges faced by remote quantum computing researchers, and how can these be addressed?

Remote quantum computing researchers often encounter challenges such as limited access to specialized hardware, the need for robust collaboration tools, and staying current with rapid advancements in the field. Many institutions address these by providing access to cloud-based quantum processors and fostering strong virtual communication channels within research teams. Building a routine for regular knowledge sharing, attending virtual conferences, and collaborating through code repositories can help remote researchers stay connected and productive.

What is the difference between Quantum Computing Research Remote vs Quantum Algorithm Developer?

AspectQuantum Computing Research RemoteQuantum Algorithm Developer
Required CredentialsAdvanced degrees in physics, computer science, or related fieldsSimilar advanced degrees, often with programming certifications
Work EnvironmentRemote research teams, academic or corporate labsRemote or on-site, focused on algorithm development and implementation
Employer & Industry UsageResearch institutions, tech companies, academiaTech firms, startups, research labs
Search & Comparison IntentUnderstanding remote research roles in quantum computingDeveloping and optimizing quantum algorithms remotely

Quantum Computing Research Remote involves conducting research in quantum computing from a remote location, often focusing on theoretical and experimental studies. Quantum Algorithm Developer, while similar, emphasizes creating and refining algorithms for quantum computers, which may also be done remotely. Both roles require advanced degrees and are prevalent in research and tech industries, but their core focus differs: research vs algorithm development.

More about Quantum Computing Research Remote jobs

What cities are hiring for Quantum Computing Research Remote jobs?

Cities with the most Quantum Computing Research Remote job openings:

What are the most commonly searched types of Quantum Computing Research jobs?

The most popular types of Quantum Computing Research jobs are:

What states have the most Quantum Computing Research Remote jobs?

States with the most job openings for Quantum Computing Research Remote jobs include:

Infographic showing various Quantum Computing Research Remote job openings in the United States as of August 2026, with employment types broken down into 1% Internship, 1% As Needed, 84% Full Time, 11% Part Time, 1% Temporary, and 2% Contract. Highlights an 84% Physical, 4% Hybrid, and 12% Remote job distribution, with an average salary of $46,222 per year, or $22.2 per hour.

Quantum Computing Engineer

MKS2 Technologies

Washington, DC โ€ข Remote

$200K - $230K/yr

Full-time

Posted 6 days ago


Job description

MKS2 Technologies, LLC, an award-winning high growth small business, creates innovative and customer-centric technology solutions in the areas of Cyber Security, Instructional Design and Training, Software Engineering and IT Support Services to improve the security and well-being of our clients. Our commitment to excellence and our "Mission First" orientation has resulted in steady growth and an expanding client base across government agencies. We have employees nationwide and for the past three consecutive years were named one of the fastest growing Veteran-owned companies in the nation. Please take a moment to browse through our website and learn more about what it means to serve with MKS2.


Quantum Computing Engineer

Location: Remote (Supporting Eastern Time Zone)
Employment Type: Full-Time
Security Requirement: Tier 4 / High Risk Background Investigation
Travel: Approximately two trips per year (seven trips over the life of the contract)

Salary Range: $200,000- $230,000

Position Overview

MKS2 is seeking a highly experienced Quantum Computing / Cryptography Engineer (Key Personnel) to support a federal government program focused on advancing cryptographic modernization, quantum computing readiness, and post-quantum cryptography (PQC) initiatives. This role will serve as a subject matter expert responsible for evaluating emerging quantum technologies, assessing cryptographic risks, developing quantum-resistant strategies, and supporting enterprise-wide migration planning for future cryptographic standards.

The ideal candidate will possess deep expertise in quantum computing, cryptography, cybersecurity, and secure systems architecture, with experience supporting large-scale enterprise or government environments. This individual will work closely with technical teams, security leadership, and executive stakeholders to ensure organizational readiness for the evolving quantum computing landscape.

Key Responsibilities
  • Lead assessments of organizational cryptographic systems and identify risks associated with advancements in quantum computing.
  • Develop quantum-resilient security strategies and migration roadmaps aligned with federal cybersecurity requirements.
  • Research, evaluate, and implement post-quantum cryptography (PQC) solutions and quantum-resistant algorithms.
  • Advise stakeholders on the impact of quantum computing technologies on enterprise security architectures.
  • Conduct cryptographic inventory assessments and prioritize systems for modernization and migration.
  • Evaluate emerging cryptographic standards and frameworks, including NIST post-quantum cryptography standards.
  • Design and test cryptographic solutions using classical and quantum simulation tools.
  • Provide technical guidance for implementing quantum-safe encryption, key management, and PKI solutions.
  • Collaborate with cybersecurity, software engineering, data science, and infrastructure teams to integrate quantum-resistant technologies.
  • Support policy development, governance activities, and strategic planning related to cryptographic modernization.
  • Prepare technical reports, executive briefings, and risk assessments for government stakeholders and leadership.
  • Participate in technical working groups, architecture reviews, and program management activities.
Required Experience
  • Minimum of 10 years of Information Technology experience.
  • Minimum of 5 years of Quantum Computing and Cryptography experience supporting large corporations or Federal Government agencies comparable in size and complexity to the GSA, IRS, DoD, or VA.
  • Experience supporting cryptographic modernization efforts and enterprise security initiatives.
  • Experience evaluating emerging quantum technologies and developing implementation strategies.
  • Experience working in project-based environments supporting large-scale technology initiatives.

Substitution:

  • A Master's degree in a related Information Technology field may substitute for up to two years of the required experience.
Required Education

Bachelor's degree in one of the following fields:

  • Business Administration
  • Business Management
  • Cybersecurity
  • Computer Science
  • Information Systems
  • Information Assurance
  • Information Security
  • Information Resource Management
  • Related discipline
Required Certifications

Must possess one or more of the following certifications:

  • Information Assurance Technician (IAT) Level III
  • Information Assurance Management (IAM) Level III
  • Information Assurance System Architect and Engineer (IASAE) Level III
Required Expertise
  • Strong understanding of quantum mechanics, quantum information theory, and quantum computing principles.
  • Expertise with quantum algorithms including Shor's Algorithm, Grover's Algorithm, and related quantum computational models.
  • Hands-on experience with quantum development platforms and frameworks such as:
    • IBM Qiskit
    • Google Cirq
    • Quipper
    • Microsoft Quantum Development Kit
  • Extensive knowledge of cryptographic protocols including RSA, AES, and Public Key Infrastructure (PKI).
  • Expertise in post-quantum cryptography, quantum-resistant algorithms, and cryptographic modernization initiatives.
  • Knowledge of cryptographic standards and compliance frameworks including NIST and ISO/IEC 19790.
  • Proficiency in Python, C++, Java, or similar programming languages used for implementing and testing cryptographic solutions.
  • Experience utilizing classical and quantum simulation environments.
  • Proven ability to develop and advise on cryptographic migration strategies aligned with post-quantum security requirements.
  • Experience assessing enterprise cryptographic inventories and prioritizing modernization efforts.
  • Ability to effectively communicate complex technical concepts and quantum-related risks to executive leadership and non-technical audiences.
  • Experience developing policy recommendations and technical guidance aligned with NIST PQC standards, including FIPS 203, FIPS 204, and FIPS 205.
  • Strong project management and organizational skills with experience operating within structured program environments.
Security Requirement
  • Must be able to successfully obtain and maintain a Tier 4 / High Risk Background Investigation.
Place of Performance
  • Remote position supporting Eastern Time Zone operations.
  • Meetings and coordination activities may occur at the Department of Veterans Affairs Central Office (VACO), 811 Vermont Avenue NW, Washington, DC.
  • Routine onsite support is not anticipated.
Hours of Operation
  • Available during normal Federal Government workdays.
  • Responsive during core business hours of 8:00 AM to 5:00 PM Eastern Time.
Travel Requirements
  • Support program-related meetings, workshops, and stakeholder engagements as required.
  • Government estimates approximately two trips per year, totaling seven trips across the life of the contract.
Why Join MKS2?

MKS2 delivers innovative technology and cybersecurity solutions that support critical federal missions. As a Quantum Computing / Cryptography Engineer, you will play a key role in helping government organizations prepare for the future of cybersecurity by developing strategies and solutions that address the emerging challenges posed by quantum computing. This position offers the opportunity to influence enterprise-wide security modernization efforts within a highly collaborative, mission-driven environment.


Diversity creates a healthier atmosphere: MKS2 Technologies is proud to be an Equal Employment Opportunity / Affirmative Action employer, and all qualified applicants will receive consideration for employment without regard to race, color, religion, sex, age, national origin, protected veteran status, disability status, sexual orientation, gender identity or expression, marital status, genetic information, or any other characteristic protected by law.