Develops algorithms, software and error-correction methods for quantum computers, working at the frontier of physics and computer science. BLS does not publish separate figures for computer and information research scientists; it counts them within computer and information research scientist (SOC 15-1221), whose median pay is $140,300 a year (BLS OEWS, May 2025). Typical entry-level education: Doctoral or professional degree.
- SOC 15-1221
- Computer and Mathematical
- Last updated October 9, 2026
At a glance
Quantum Computing Researcher in four numbers
- Median pay
- $140,300a year, or $67.45/hrBLS OEWS, May 2025Lowest 10% $82KTop 10% $231K
US median, all jobs: $50,980
- Projected growth
- +21.8%Much faster than averageBLS EP, 2025–2035This career+21.8%All jobs+3.5%
Projected employment change, 2025–2035 Item Value This career +21.8% All jobs +3.5% - Openings a year
- 2,90038,600 jobs todayBLS EP, 2025–2035
- Jobs in 202538.6K
- Projected 203547K
Employment, 2025–2035 Item Value Jobs in 2025 38.6K Projected 2035 47K - Typical education
- Doctorateneeded to enterBLS EP, 2025–2035; mix: O*NET
- Some college8.4%
- Bachelor's36.2%
- Master's19.9%
- Professional degree2.6%
- Doctorate28.4%
- Post-doctoral training4.5%
Highest education held by computer and information research scientists Segment Value Some college 8.4% Bachelor's 36.2% Master's 19.9% Professional degree 2.6% Doctorate 28.4% Post-doctoral training 4.5%
Also advertised as: Quantum Computing Scientist, Quantum Algorithm Researcher, Quantum Software Engineer, Quantum Information Scientist, Quantum Research Scientist.
Pay
How much do Computer and Information Research Scientists make?
Every quantum computing researcher in the US, by percentile of annual wage
Median
$140,300
Middle half earn $103,570 to $188,700
- 10th
- $82,200
- 25th
- $103,570
- 75th
- $188,700
- 90th
- $230,630
All US occupations: $50,980
| Percentile | Value |
|---|---|
| 10th | $82,200 |
| 25th | $103,570 |
| Median | $140,300 |
| 75th | $188,700 |
| 90th | $230,630 |
| All US occupations | $50,980 |
Source: BLS OEWS, May 2025
- Median annual wage
- $140,300
- Median hourly wage
- $67.45/hr
- Mean annual wage
- $153,930
- People employed
- 37,200
Versus all US occupations
At $140,300, Computer and Information Research Scientists earn 175% above the $50,980 median across all US occupations, a difference of $89,320 a year.
Versus computer and mathematical occupations
Inside the Computer and Mathematical group, where the middle occupation pays $116,580, this is 20% above the group median.
Pay range
The top 10% earn $230,630 or more while the bottom 10% earn $82,200, a gap of 2.8×. That is a typical spread for a US occupation.
Rank in the bank
This median pays more than 91% of the 1,741 occupations in the NueCareer career bank.
Highest-paying state
Oregon pays the most at $206,220, and still leads at $199,514 once local prices are taken into account.
Pay by state
Which states pay Computer and Information Research Scientists the most?
State medians come from the same OEWS release as the national figures. The cost-of-living column divides each state median by that state's BEA Regional Price Parity, restating pay in national-average dollars so a high-cost state and a low-cost one can be compared directly.
| State | Median | COL-adjusted | Employed |
|---|---|---|---|
| 1Oregon | $206,220 | $199,514 | 730 |
| 2Washington | $202,400 | $189,136 | 2,050 |
| 3New York | $181,990 | $168,633 | 1,950 |
| 4Massachusetts | $170,510 | $161,228 | 1,760 |
| 5New Mexico | $165,690 | $179,684 | 490 |
| 6California | $159,100 | $143,696 | 8,440 |
| 7Virginia | $157,390 | $155,671 | 3,590 |
| 8Maryland | $145,310 | $138,445 | 2,870 |
| 9District of Columbia | $144,190 | $131,200 | 330 |
| 10New Jersey | $140,840 | $129,443 | 1,580 |
Job outlook
Is Quantum Computing Researcher a growing career?
Employment change over 2025–2035, against every US occupation
Much faster than average. +21.8% projected growth vs 3.5% for all occupations.
| Item | Value |
|---|---|
| Computer and Information Research Scientists | +21.8% |
| All US occupations | +3.5% |
Source: BLS EP, 2025–2035
Much faster than average
BLS projects employment of Computer and Information Research Scientists to change 21.8% over 2025–2035, roughly 6.2× the 3.5% projected for all occupations. That is 8,400 more jobs.
Annual openings
About 2,900 openings are projected each year, 7.5% of the 38,600 jobs that existed in 2025. Most come from workers leaving the occupation, not from growth alone.
Getting in
How to become a Quantum Computing Researcher
Most quantum computing researchers hold a PhD in physics, computer science, mathematics or electrical engineering, focused on quantum information. Doctoral programs typically take five or more years. Strong linear algebra, quantum mechanics and programming are essential.
The National Quantum Initiative coordinates federal research, and Department of Energy national labs and NSF-funded centers host graduate and postdoctoral positions. Quantum software engineer roles at companies sometimes accept a master's degree with strong programming and open-source contributions to quantum frameworks. Summer research programs and postdoctoral fellowships are common stepping stones.
- 1
Typical entry-level education
Doctoral or professional degree
- 2
Work experience in a related occupation
None
- 3
Typical on-the-job training
None
- 4
Preparation needed (O*NET job zone)
Considerable preparation
BLS Employment Projections, 2025–2035; job zone from O*NET 31.0 Database.
What education people in the job have
O*NET incumbent survey: the highest level of education reported by people already working as computer and information research scientists.
- Bachelor's Degree36.2%
- Doctoral Degree28.4%
- Master's Degree19.9%
- Some College Courses8.4%
- Post-Doctoral Training4.5%
| Item | Value |
|---|---|
| Bachelor's Degree | 36.2% |
| Doctoral Degree | 28.4% |
| Master's Degree | 19.9% |
| Some College Courses | 8.4% |
| Post-Doctoral Training | 4.5% |
Source: O*NET 31.0 Database
The work
What does a Quantum Computing Researcher do?
Quantum computing researchers work on computers that use quantum mechanics to process information. Some design algorithms that could outperform classical computers on problems such as simulating molecules, optimization or factoring. Others work on quantum error correction, which protects fragile qubits from noise, or on compilers and software that translate programs into operations a specific machine can run.
The work mixes theory, programming and experiments. Researchers write code in frameworks such as Qiskit or Cirq, run circuits on real quantum hardware through cloud access, analyze results, and publish papers. Those on hardware teams collaborate with physicists and engineers who build superconducting, trapped-ion or photonic machines.
Day-to-day tasks
- Design quantum algorithms for chemistry, optimization or cryptography
- Develop quantum error correction schemes
- Write and run circuits with Qiskit, Cirq or similar tools
- Benchmark algorithms on real quantum hardware
- Build compilers that map programs to hardware
- Publish papers and present at conferences
- Collaborate with hardware physicists and engineers
Typical tasks, researched by NueCareer from the sources below.
Working conditions and hours
Quantum researchers work at university labs, national laboratories, government research agencies and the quantum divisions of technology companies and startups. The work is mostly at a desk with computers, plus lab time for hardware-focused roles. Schedules are flexible but research deadlines can be demanding. Conference travel is common.
Where the work happens
Indoors, climate-controlled
NeverEvery dayIndoors, in a climate-controlled space, every day.
Outdoors in all weather
NeverEvery dayAlmost never works outdoors.
Physical demands
Sitting
NeverAlmost all the timeSeated for more than half the working day.
Standing
NeverAlmost all the timeBending or twisting
NeverAlmost all the time
Working with people
Contact with other people
NoneConstantFace-to-face discussions
NeverEvery dayFace-to-face discussions every day.
Dealing with the public
Not importantExtremely important
Pressure and stakes
Strict deadlines
NeverEvery dayConflict situations
NeverEvery dayCost of a mistake
Not seriousExtremely serious
Autonomy
Freedom to decide
NoneA lotA lot of freedom to make decisions without checking first.
Conditions: O*NET Work Context survey. Each item has its own scale, so each dot is read against the two answers that end its own line.
Core skills
O*NET importance, 1 to 5
- Critical Thinking4.0
- Reading Comprehension3.8
- Active Listening3.8
- Speaking3.5
- Active Learning3.5
- Writing3.4
- Mathematics3.4
- Science3.1
| Item | Value |
|---|---|
| Critical Thinking | 4.0 |
| Reading Comprehension | 3.8 |
| Active Listening | 3.8 |
| Speaking | 3.5 |
| Active Learning | 3.5 |
| Writing | 3.4 |
| Mathematics | 3.4 |
| Science | 3.1 |
Source: O*NET 31.0 Database
Transferable skills
O*NET importance, 1 to 5
- Complex Problem Solving4.0
- Judgment and Decision Making4.0
- Systems Analysis3.8
- Programming3.6
- Systems Evaluation3.6
- Time Management3.4
- Operations Analysis3.1
- Technology Design3.1
| Item | Value |
|---|---|
| Complex Problem Solving | 4.0 |
| Judgment and Decision Making | 4.0 |
| Systems Analysis | 3.8 |
| Programming | 3.6 |
| Systems Evaluation | 3.6 |
| Time Management | 3.4 |
| Operations Analysis | 3.1 |
| Technology Design | 3.1 |
Source: O*NET 31.0 Database
Tools and software
- Analytical or scientific software · in demand
- Application server software · in demand
- Business intelligence and data analysis software · in demand
- Cloud-based management software · in demand
- Configuration management software · in demand
- Data base management system software · in demand
- Data base user interface and query software · in demand
- Data mining software · in demand
- Development environment software · in demand
- Enterprise application integration software · in demand
- Expert system software · in demand
- File versioning software · in demand
“In demand” marks an O*NET Employer-Based Hot Technology, software named in real job postings for this occupation.
Personality fit
What personality type suits a Quantum Computing Researcher?
NueCareer estimate (Holland code IRA) built on O*NET's Computer and Information Research Scientist profile, scored 1 to 7
| Axis | Quantum Computing Researcher |
|---|---|
| Realistic | 5 |
| Investigative | 7 |
| Artistic | 4 |
| Social | 2 |
| Enterprising | 2 |
| Conventional | 5 |
Source: O*NET 31.0 Database
What the work is built around
Day to day this is work built around investigating, analysing and solving problems with ideas and data, combined with organising, following procedures and working precisely with data.
- Investigative7.0
- Conventional4.8
- Realistic4.5
- Artistic3.8
- Enterprising2.5
- Social2.0
Closest MBTI types
NueCareer fit scores: cosine similarity between each MBTI type's interest vector and this occupation's O*NET interest profile. Not a BLS or O*NET figure; the method is documented on our methodology page.
Questions
Quantum Computing Researcher: frequently asked questions
How much do Computer and Information Research Scientists make?
BLS does not publish a separate wage for computer and information research scientists. It counts them within computer and information research scientist, whose median pay is $140,300 a year (BLS OEWS, May 2025). The middle half of that occupation earn between $103,570 and $188,700, and the top 10% earn $230,630 or more.
Do you need a degree to become a Quantum Computing Researcher?
Yes, and beyond a bachelor's: BLS lists a doctoral or professional degree as the typical entry requirement for Computer and Information Research Scientists. In O*NET's survey of people already doing the job, 36.2% hold bachelor's degree.
Is Quantum Computing Researcher a growing career?
Yes, strongly. Employment is projected to grow 21.8% over 2025–2035, more than double the 3.5% projected for all occupations (BLS EP, 2025–2035). BLS still projects about 2,900 openings a year, mostly from workers retiring or moving to other work.
What does a Quantum Computing Researcher do?
Quantum computing researchers work on computers that use quantum mechanics to process information. A typical task: design quantum algorithms for chemistry, optimization or cryptography. Employers most often ask for Analytical or scientific software, Application server software, Business intelligence and data analysis software.
Which states pay Computer and Information Research Scientists the most?
The highest state medians for Computer and Information Research Scientists are Oregon ($206,220), Washington ($202,400), New York ($181,990) (BLS OEWS, May 2025).
What personality type suits a Quantum Computing Researcher?
O*NET scores Computer and Information Research Scientists highest on the Investigative, Conventional and Realistic interest areas, so the work mixes investigating, analysing and solving problems with ideas and data with organising, following procedures and working precisely with data. On NueCareer's MBTI-to-interest mapping that lines up most closely with INTJ personalities. Personality is a fit signal, not a gate. The free NueCareer quiz scores your own profile against all 1,731 careers in the bank.






