Quantum Scientist QEC (Quantum Error Correction)

MIT Lincoln Laboratory
Lexington, MA, United States
2 months ago

Role details

Contract type
Permanent contract
Employment type
Full-time (> 32 hours)
Compensation
$145,200.0 - $170,000.0
Working hours
Regular working hours

Tech stack

C++ (Programming Language) Fault Tolerance Field-Programmable Gate Array (FPGA) Integrated Development Environments Python (Programming Language) MATLAB Mathematica Quantum Computing Software Engineering Graphics Processing Unit (GPU) Information Technology

Job description

The Quantum-Enabled Computation group at MIT Lincoln Laboratory seeks a full-time technical staff member with experience in quantum error correction to perform research on the design, implementation, and evaluation of current fault-tolerant schemes and their application to emerging quantum computing platforms. This researcher will work within a group that is performing research in various aspects of quantum computing including: quantum algorithms, quantum circuit implementation, resource estimation, and simulation of quantum error correction implementations in the presence of realistic error. Members of the Technical Staff are expected to mentor and supervise more junior researchers, lead small teams of colleagues, contribute to program development and management, and help shape future research directions.

Candidates should have experience in one or more of the following areas:

  • Design and analysis of quantum error correction (QEC) codes including: topological codes (e.g. surface codes), and qLDPC codes.
  • Mapping fault-tolerant implementations to physical hardware platforms and resource estimation of these implementations
  • Syndrome decoding algorithms and their implementation in software and on accelerator hardware (e.g. FPGAs, GPUs)
  • Simulation of the performance of QEC and fault-tolerant protocols using tools such as STIM and/or other simulators
  • Utilization of quantum software development environments, including: Cirq, Qualtran, QisKit, QuTip, etc.

Requirements

  • PhD in Physics, Computer Science, Mathematics or related field.
  • Strong background in quantum error correction and quantum computer science
  • Experience developing quantum circuits for QEC
  • Demonstrated ability to develop software in programming languages such as: C++, Python, Matlab, and/or Mathematica

Preferred Qualifications:

  • Experience in specific aspects of QEC research, as described above

Benefits & conditions

Recent Graduate Hiring Range: $145,200-$170,000

Experienced Hiring Range: $145,200-$220,000

Disclaimer: MIT Lincoln Laboratory provides a typical hiring range as a good faith estimate of what we reasonably expect to offer for this position at the time of posting. The final salary offered to a selected candidate will depend on various factors, including-but not limited to-the scope and responsibilities of the role, the candidate’s experience, skills and education/training, internal equity considerations and applicable legal requirements. This range reflects base salary only and does not include additional forms of compensation or benefits.

At MIT Lincoln Laboratory, our exceptional career opportunities include many outstanding benefits to help you stay healthy, feel supported, and enjoy a fulfilling work-life balance. Benefits offered to employees include:

  • Comprehensive health, dental, and vision plans
  • MIT-funded pension
  • Matching 401K
  • Paid leave (including vacation, sick, parental, military, etc.)
  • Tuition reimbursement and continuing education programs
  • Mentorship programs
  • A range of work-life balance options
  • … and much more!

Please visit our Benefits page for more information. As an employee of MIT, you can also take advantage of other voluntary benefits, discounts and perks .

Selected candidate will be subject to a pre-employment background investigation and must be able to obtain and maintain a Secret level DoD security clearance.

About the company

The mission of the Quantum-Enabled Computation Group is to explore, prototype, and demonstrate transformative computational advantage by leveraging quantized and entangled signals. Our work falls into three key thrusts: quantum computing with superconducting qubits, classical computing with single flux quanta in superconducting circuits, and quantum information science and algorithms. We also enable the broader US research enterprise via superconducting device foundries and open-source software development, and support the US Government as strategic Test and Evaluation partners and subject matter experts. Our interdisciplinary Group includes scientific experts in computer science, quantum information, device theory, materials science, fabrication and integration engineering, electrical and microwave engineering, and quantum physics.

Apply for this position

This job is hosted externally. Click below to view the full posting and apply.

Apply on clearancejobs.com

Good distractions

Talks and stories from around this role — technically off-topic, practically not.

52 sec

Software development challenges in quantum computing ecosystems

Alex Waldherr Alex Waldherr · WWC 2024

2:40 min

Motivations for transitioning legacy MATLAB repositories to Python

Michael Niebisch Michael Niebisch · WWC 2024

1:05 min

Practical Byzantine Fault Tolerance in distributed computing systems

Jonan Scheffler · WWC 2022

1:45 min

Overcoming hardware limits with quantum error correction

Alexander Glätzle Alexander Glätzle +3 · WWC 2024

2:14 min

Custom domain controllers and vehicle communication networks

Denis Grahovac · WWC 2021

3:49 min

Enhancing system resilience and fault tolerance

Michael Eder +1 · LIVE

Videos

See all

Related articles

See all