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Technergetics

Quantum Benchmarking Initiative Researcher

Remote

hirly's read of this role

Seniority
Mid level
Stated salary
$75,000 – $150,000 per year
Work mode
Remote-friendly
First seen by hirly
2 Sept 2026

Derived automatically from the posting.

the posting

Position: Quantum Benchmarking Initiative Researcher

  • Beware of fraudulent job offers and postings!
  • Technergetics will never extend an offer of employment without a thorough interview process involving face to face interviews either in-person or a virtual Teams meeting from an official Technergetics email address ( @techngs.com ). If you receive any correspondence from an email other than techngs.com , it is a scam. Pre-interview code testing is only administered through the Codility platform. We will not send out questionnaires or testing through any other platform/site prior to a first interview.

Opportunity Overview:

Technergetics is seeking to hire u p to five mid-level to senior-level Physicists, Mathematicians, Logisticians, Computer Scientists, Computer Engineers, Systems Engineers, and Operations Research experts. While a research background is a valuable and applicable skillset for these positions, the objective of them is evaluation, not research.

These positions will work closely with the Defense Advanced Research Projects Agency (DARPA)’s cross-organizational Quantum Benchmarking Initiative (QBI) team to review, validate, and document approaches enabling revolutionary advances in design, engineering, testing, and evaluation in the domain of fault-tolerant quantum computing and exploring computational workflows that include quantum computing procedures. The primary goal of the QBI program is to determine if any emerging approaches to quantum computing can achieve industrially useful operation exponentially faster than conventional predictions.

Position Details

Salary Range: $75,000-$150,000 annually. The successful candidate’s salary will heavily depend on how many position qualifications the candidate meets, in addition to education and experience. This is a full-time exempt position.

Remote performance is expected for this position and Technergetics will consider candidates from across the United States. Regardless of location, a successful candidate can expect to travel to the Washington DC area (DARPA), and Support or Performer sites across the country 10%-40% of any given month. Daily activities include frequent VTC meetings and may also require limited/periodic nonstandard work hours to accommodate meetings with team members and Performers across multiple time zones.

Responsibilities and Duties

The day-to-day activities of DARPA’s QBI team include performing tasks to identify, select, capture, evaluate, and document the metrics and approaches that DARPA’s commercial Performers are developing and applying to build fault-tolerant, utility-scale quantum computers (USQC). The QBI team is responsible for generating and executing plans to assess the timeline, performance and operation metrics, and plausibility of each Performer’s technology. Candidates will verify a Performer’s ability to build a USQC that operates as intended, and they will document, report, and justify the findings.

Typical work can be divided into three categories:

1. Review and Evaluation

Rapidly digest large quantities of complex Performer-specific technical details, perform relevant independent evaluations, and generate standardized Government artifacts summarizing independent assessments of that material

Evaluate quantum computing architectures, devices, algorithms, and applications including utility and maturity

Identify Performer subsystems and components required to successfully design and construct the system

Discover, develop, implement, execute, evaluate, analyze, articulate, and justify models and simulations at the component, subsystem, and system levels

Assess DARPA and Performer requirements; capture and document the level of maturity of these elements

Identify, assess, and capture design, development, and integration risk

Identify the Performer’s interface approach

For efforts with an existing Interface Control Document (ICD), review the information and identify any shortcomings. It may be necessary to convert the Performer-provided ICD to a common framework identified/developed by the Government evaluation team.

For Performer efforts that do not have an existing Interface Control Document, assist the Performer to track system interfaces through an ICD or similar document.

2. Documentation and Reporting

Assist non-traditional performers to complete design reviews

Participate in system concept and readiness reviews

Perform prototype subsystem System Requirements Review (SRR) through Final Design Review (FDR) and prototype construction

Assist with diverse evaluation and documentation activities

Identify, implement, and apply standardized Government and systems engineering products, practices, and documentation

3. Professionalism and Teamwork

Work with a multidisciplinary team of researchers, physicists, scientists, engineers, and subject matter experts to identify problems and synthesize solutions which can be integrated into preexisting workflows and processes

Discover, develop, and lead novel workflows to enhance and improve evaluation processes as new Performers are added to the program

Cultivate a professional and respectful environment of cooperation by listening and considering the views of others.

Be willing and able to seek opportunities for collaboration with personnel from other functional units (finance, contracting, etc.) and other technical areas of participating organizations to accomplish work-related activities.

Education and Certifications:

This project requires, at minimum, graduation from an accredited college or university with a Bachelor’s Degree in a Science, Mathematics or Engineering discipline.

A Master of Science degree or PhD in Engineering, Logistics, Computer Science/Engineering, Operations Research, or related field is preferred.

Qualifications:

1+ years of professional experience in physics, mathematics, computer engineering, operations research or closely related position is a plus

Knowledge and experience with photonic principles, devices and circuits, integrated photonic chips, and similar

Knowledge and experience with superconductor principles, devices and circuits, integrated superconductor chips, and similar

Knowledge and experience of the principles and practices of using other viable quantum information modalities, such as solid-state devices, atomic systems, etc. for elements of scalable quantum computation

Knowledge and experience with standard Systems Engineering (SE) frameworks and practices (SysML, DoDAF, etc.); Experience with DoE SE practices is a plus.

Familiar with typical DoD reviews, including technical review products and organizational structure

Experience with development/execution of modeling and simulation tools and related software tools and techniques

Ability to leverage mathematics and statistics to analyze, visualize, and explain complex and unstructured data

Comfortable speaking to diverse audiences; capable of organizing and conveying abstract/complex ideas and concepts

Able to expediently generate focused and detailed work product based on evolving/general/nebulous task requests

Understand USAF/DoD structure and current strategic guidance; able to follow and respect the chain of command

Comfortable engaging in frequent and recurring video teleconference (VTC) meetings (camera on)

Candidates absolutely must be capable of working independently to produce timely products, with a mindset that embraces the flexibility required to define and follow the procedures for DARPA’s new and evolving QBI program

The following advanced knowledge of quantum computing is a plus:

Experience planning, performing, and conducting experimental quantum research using computer simulations and mathematical models

Specific experience with quantum computing hardware, especially valuable if it is across multiple qubit modalities

Specific experience developing quantum algorithms designed for fault-tolerant

Original posting on Technergetics's site ↗