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Quantum Computing Engineer Junior Jobs in Georgia

Manager, Cloud Engineer - Terraform

Atlanta, GA · On-site

$53.50 - $71.75/hr

... and quantum computing to design and implement real-world solutions for a variety of business ... KPMG is currently seeking a Manager, Cloud Engineer for our Consulting practice. Responsibilities ...

Engage in quantum engineering projects, applying principles of quantum mechanics to engineering ... Experience mentoring junior colleagues and interns.

We've been at the forefront of inventing Virtual Platforms and democratizing cloud computing for ... Coach and mentor junior engineers on best practices of software engineering, leveraging AI to ...

We believe firmly in the future of cloud computing and its inevitability; we believe every ... We are looking for an extremely bright, experienced engineer that loves the idea of building custom ...

We've been at the forefront of inventing Virtual Platforms and democratizing cloud computing for ... Coach and mentor junior engineers on best practices of software engineering, leveraging AI to ...

We've been at the forefront of inventing Virtual Platforms and democratizing cloud computing for ... Coach and mentor junior engineers on best practices of software engineering, leveraging AI to ...

We believe firmly in the future of cloud computing and its inevitability; we believe every ... We are looking for an extremely bright, experienced engineer that loves the idea of building custom ...

Cloud Engineer

Alpharetta, GA · Hybrid

$54.50 - $72.75/hr

... computing • Ability to mentor and develop more junior programmers, including participating in constructive code reviews • Collaborate with developers and infrastructure teams to enhance the ...

Mentor junior sales engineers and support the development of technical sales best practices ... computing, or advanced visualization technologies • Fluent in French • Active or previous US ...

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Quantum Computing Engineer Junior information

What does a Quantum Computing Engineer Junior do?

A Quantum Computing Engineer Junior assists in designing, developing, and testing quantum algorithms and hardware components. They typically work under the guidance of senior engineers and researchers, helping to build and maintain quantum computing systems. Their responsibilities can include coding quantum programs, running simulations, troubleshooting issues, and staying updated on the latest advancements in quantum technologies. This entry-level role offers hands-on experience and learning opportunities in the rapidly evolving field of quantum computing.

What are some common challenges faced by junior quantum computing engineers when transitioning from academia to industry?

Junior quantum computing engineers often find the transition from academia to industry challenging due to differences in project timelines, collaboration styles, and the need to quickly adapt to proprietary hardware and software tools. In industry, there's a greater emphasis on working as part of multidisciplinary teams and delivering results under tight deadlines. Additionally, engineers may need to broaden their expertise beyond theoretical concepts to include practical skills such as coding, debugging, and optimizing algorithms for real-world quantum devices. Continuous learning and adaptability are key to thriving in this dynamic and evolving field.

What is the difference between Quantum Computing Engineer Junior vs Quantum Computing Engineer?

AspectQuantum Computing Engineer JuniorQuantum Computing Engineer
Required CredentialsBachelor's degree in physics, computer science, or related field; some experience or internshipsBachelor's or master's degree; more experience or specialized certifications preferred
Work EnvironmentEntry-level labs, research teams, or tech companies; supervised projectsMore independent roles; involved in design, development, and testing of quantum algorithms and hardware
Employer & Industry UsageStartups, research institutions, tech companies exploring quantum techEstablished tech firms, research labs, and industry leaders in quantum computing

The main difference between a Quantum Computing Engineer Junior and a Quantum Computing Engineer lies in experience, responsibilities, and independence. Junior roles focus on learning and supporting projects, while full engineers take on more complex tasks and leadership in quantum computing development.

What are the key skills and qualifications needed to thrive as a Quantum Computing Engineer Junior, and why are they important?

To thrive as a Quantum Computing Engineer Junior, you need a solid background in quantum mechanics, linear algebra, and computer science, typically supported by a degree in physics, computer science, or a related field. Familiarity with quantum programming languages like Qiskit or Cirq, and experience using quantum simulators and cloud-based quantum platforms are commonly required. Strong analytical thinking, problem-solving abilities, and curiosity are standout soft skills in this position. These skills and qualities are vital for contributing to complex quantum projects and advancing innovation in this rapidly evolving field.
What are the most commonly searched types of Quantum Computing Engineer jobs in Georgia? The most popular types of Quantum Computing Engineer jobs in Georgia are:
What are popular job titles related to Quantum Computing Engineer Junior jobs in Georgia? For Quantum Computing Engineer Junior jobs in Georgia, the most frequently searched job titles are:
What job categories do people searching Quantum Computing Engineer Junior jobs in Georgia look for? The top searched job categories for Quantum Computing Engineer Junior jobs in Georgia are:
What cities in Georgia are hiring for Quantum Computing Engineer Junior jobs? Cities in Georgia with the most Quantum Computing Engineer Junior job openings:
Infographic showing various Quantum Computing Engineer Junior job openings in Georgia as of July 2026, with employment types broken down into 87% Full Time, 10% Part Time, 1% Temporary, and 2% Contract. Highlights an 87% Physical, 3% Hybrid, and 10% Remote job distribution.
Applied Physicist (Quantum Systems) - GTRI - CIPHER - Open Rank

Applied Physicist (Quantum Systems) - GTRI - CIPHER - Open Rank

Georgia Tech Research Institute

Atlanta, GA • On-site

Other

Medical, Retirement

Posted 3 days ago


Georgia Tech rating

7.5

Company rating: 7.5 out of 10

Based on 44 frontline employees who took The Breakroom Quiz

306th of 611 rated colleges and universities


Job description

Overview:

The Georgia Tech Research Institute (GTRI) is the nonprofit, applied research division of the Georgia Institute of Technology (Georgia Tech).Founded in 1934 as the Engineering Experiment Station, GTRI has grown to more than 2,900 employees, supporting eight laboratories in over 20 locations around the country and performing more than $940 million of problem-solving research annually for government and industry.GTRI's renowned researchers combine science, engineering, economics, policy, and technical expertise to solve complex problems for the U.S. federal government, state, and industry.

Georgia Tech's Mission and Values

Georgia Tech's mission is to develop leaders who advance technology and improve the human condition. The Institute has nine key values that are foundational to everything we do:

1. Students are our top priority.
2. We strive for excellence.
3. We thrive on diversity.
4. We celebrate collaboration.
5. We champion innovation.
6. We safeguard freedom of inquiry and expression.
7. We nurture the wellbeing of our community.
8. We act ethically.
9. We are responsible stewards.

Over the next decade, Georgia Tech will become an example of inclusive innovation, a leading technological research university of unmatched scale, relentlessly committed to serving the public good; breaking new ground in addressing the biggest local, national, and global challenges and opportunities of our time; making technology broadly accessible; and developing exceptional, principled leaders from all backgrounds ready to produce novel ideas and create solutions with real human impact.

Project/Unit Description

The Quantum Systems (QS) Division of the Georgia Tech Research Institute's Cybersecurity, Information Protection, and Hardware Evaluation Research (CIPHER) Lab is seeking self-motivated individuals with experience in quantum science or photonics research. The division is composed of a large team of scientists and engineers from disciplines including physics, chemistry, electrical engineering, optical science, mechanical engineering, mathematics, and chemical engineering. QS employees perform fundamental research exploring next-generation technologies based on exotic physical phenomena, working to prove that devices based on these technologies can provide real-world solutions relevant to sponsors.
Our research portfolio includes programs in trapped-ion quantum computing, simulation, and sensing, vapor cell optically pumped magnetometers and Rydberg electrometers, atomic clocks, and the development of mass spectrometers. Support is available to develop projects outside of existing areas of research, such as photonic quantum computing, solid-state defects like NV-centers, quantum networking, and inertial sensors. QS researchers frequently contribute to projects in other GTRI labs and CIPHER divisions involving research in other topics including artificial intelligence and machine learning, communications, biophysics, security, and optics.
The candidate will be expected to work independently and effectively in a highly collaborative, multi-disciplinary team environment. Affiliated with the Georgia Institute of Technology and located on its main campus in Atlanta Georgia, GTRI offers a unique opportunity to conduct applied research in a university setting. Employees in this position are encouraged to publish academic literature and pursue collaborations with academic, government, and industry partners.

Job Purpose

An applied physicist leverages knowledge and skills from the fields of physics, chemistry, material science, and mathematics to contribute to the research, analysis, design, and development of innovative systems, sensors, materials, and devices. They design and conduct experiments and/or simulations to ascertain physical properties and behaviors. Experiments conducted may involve the measurement, characterization, and testing of equipment and environmental phenomenology using specialized tools. Fundamental physical principles are used to inform the design of systems and sensors, to evaluate their theoretical performance, and to develop algorithms. Areas of application may include: optical systems, energy systems and storage, quantum systems, EO/IR & RF M&S and analysis, and photonics, and new materials. An applied physicist might also contribute to the development and application of new materials related to energy production, harvesting, and storage or to areas as diverse as healthcare, entertainment, or national security.

Key Responsibilities
  • Perform more complex tests, experiments, calculations, and/or simulations to determine physical parameters/properties and behaviors of materials and systems and conduct more complex data analysis on the results of measurements and/or simulations
  • Lead design of experiments for simple experiments
  • Generate documentation of experiments and results
  • Contribute to white papers and proposals
  • Contribute to technical reports/presentations of project results

Additional Responsibilities

* Lead proposal writing and other business development activities to win funding for new research thrusts
* Manage the technical and financial execution of research programs
* Contribute to existing projects in applied quantum technologies
* Author technical reports and publications
* Present research to sponsors and peers
* Keep up-to-date in relevant published literature on applied quantum technologies

Required Minimum Qualifications

*Candidates currently enrolled in an accredited degree program relevant to this position will be considered.
*Demonstrated expertise, e.g. through peer-reviewed publications, in quantum science research.

Preferred Qualifications
  • Active TS SCI
  • An ability to effectively communicate technical concepts to technical and non-technical audiences.
  • Active security clearance
    * Technical experience with any of the following:
    a. AMO physics techniques including ion trapping, laser cooling, atomic spectroscopy
    b. vapor cell sensors and clocks
    c. solid state color centers (e.g. NV-centers in diamond)
    d. single photon sources (e.g. quantum dot or four-wave-mixing) and detectors (e.g. SNSPDs)
    e. theoretical quantum optics and/or design for quantum optics experiments
    f. creation and analysis of entangled photon states (e.g. Bell pairs, GHZ states)
    g. integrated photonics design
    h. photonic quantum computing
    i. design and demonstration of practical or fielded quantum devices
    j. scientific programming
    k. micro/nano-fabrication tools and techniques

Travel Requirements

<10% travel

Education and Length of Experience

This position vacancy is an open-rank announcement. The final job offer will be dependent on candidate qualifications in alignment with Research Faculty Extension Professional ranks as outlined in section 3.2.1 of the Georgia Tech Faculty Handbook

  • 0 years of related experience with a Bachelor's degree in Physics, Chemistry, Mathematics, Mechanical Engineering, Electrical Engineering, Optics, Computer Science, Engineering, Materials Science, Optical Engineering, Chemical Engineering.


U.S. Citizenship Requirements

Due to our research contracts with the U.S. federal government, candidates for this position must be U.S. Citizens.

Clearance Type Required

Candidates must be able to obtain and maintain an active security clearance.

Benefits at GTRI

Comprehensive information on currently offered GTRI benefits, including Health & Welfare, Retirement Plans, Tuition Reimbursement, Time Off, and Professional Development, can be found through this link: https://benefits.hr.gatech.edu/.

Equal Employment Opportunity

The Georgia Institute of Technology (Georgia Tech) is an Equal Employment Opportunity Employer. The Institute is committed to maintaining a fair and respectful environment for all. To that end, and in accordance with federal and state law, Board of Regents policy, and Institute policy, Georgia Tech provides equal opportunity to all faculty, staff, students, and all other members of the Georgia Tech community, including applicants for admission and/or employment, contractors, volunteers, and participants in institutional programs, activities, or services. Georgia Tech complies with all applicable laws and regulations governing equal opportunity in the workplace and in educational activities.

Equal opportunity and decisions based on merit are fundamental values of the University System of Georgia ("USG") and Georgia Tech. Georgia Tech prohibits discrimination, including discriminatory harassment, on the basis of an individual's race, ethnicity, ancestry, color, religion, sex (including pregnancy), national origin, age, disability, genetics, or veteran status in its programs, activities, employment, and admissions. Further, Georgia Tech prohibits citizenship status, immigration status, and national origin discrimination in hiring, firing, and recruitment, except where such restrictions are required in order to comply with law, regulation, executive order, or Attorney General directive, or where they are required by Federal, State, or local government contract.

USG Core Values Statement

The University System of Georgia is comprised of our 26 institutions of higher education and learning as well as the System Office. Our USG Statement of Core Values are Integrity, Excellence, Accountability, and Respect. These values serve as the foundation for all that we do as an organization, and each USG community member is responsible for demonstrating and upholding these standards. More details on the USG Statement of Core Values and Code of Conduct are available in USG Board Policy 8.2.18.1.2 and can be found on-line at https://www.usg.edu/policymanual/section8/C224/#p8.2.18_personnel_conduct.

Additionally, USG supports Freedom of Expression as stated in Board Policy 6.5 Freedom of Expression and Academic Freedom found on-line at https://www.usg.edu/policymanual/section6/C2653.


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About Georgia Tech

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Georgia Tech is a top-ranked public research university situated in the heart of Atlanta, a diverse and vibrant city with great economic and cultural strengths. The Institute is a member of the University System of Georgia, the Georgia Research Alliance, and the Association of American Universities. Georgia Tech prides itself on its technology resources, collaborations, high-quality student body, and its commitment to diversity, equity, and inclusion.

Industry

Education

Company size

10,000+ Employees

Headquarters location

Atlanta, GA, US

Year founded

1888

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