Research Intern 2027: Quantum Algorithms for Differential Equations (Math) Dublin, IE

IBM

Dublin

Hybrid

EUR 17,000 - 23,000

Part time

32 hours ago
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Job summary

IBM Ireland Limited invites a PhD-level intern to design and analyze quantum algorithms for differential equations. You will embed differential operators into quantum-ready forms and benchmark against classical methods, working across dynamical systems and numerical linear algebra to drive breakthroughs.

Preferred background includes PDE/ODE theory, numerical analysis, and experience with Python and Qiskit. Hybrid work arrangement with mentorship from IBM Research scientists is offered.

Qualifications

  • Deep research background in applied mathematics or related fields.
  • Experience with differential equations and operator-theoretic methods.
  • Prototyping in Python and interest in quantum frameworks (Qiskit).

Responsibilities

  • Time-evolution & simulation: develop end-to-end quantum time-evolution algorithms for sparse Hamiltonians and dissipative dynamics.
  • Operator embeddings: design embeddings of differential operators into block-encodings and QSP/LCU forms.
  • Numerics-aware design: connect discretization choices to quantum complexity and study conditioning and error propagation.
  • Resource estimation: perform query complexity, qubits, T-depth, and budgets; identify bottlenecks and improvements.
  • Benchmarking: compare quantum pipelines to classical baselines using reasonable accuracy criteria.
  • Community engagement: collaborate across dynamical systems, numerical linear algebra, and quantum computing groups.

Skills

Applied Mathematics
Quantum Algorithms
Python (NumPy/SciPy/Matplotlib)
Differential Equations

Education

Doctorate Degree

Tools

Qiskit
Python (NumPy/SciPy/Matplotlib)

Job description

At IBM Research, we are the innovation engine of IBM. Exploring what’s next in computing and shaping the technologies the world will rely on tomorrow. From advancing AI and hybrid cloud to pioneering practical quantum computing, we anticipate challenges and unlock new opportunities for clients, partners, and society. Working in Research means joining a team that accelerates discovery at the intersection of high-performance computing, AI, quantum, and cloud. You’ll collaborate with leading scientists, engineers, and visionaries to push boundaries and turn ideas into reality. With a culture built on curiosity, creativity, and collaboration, IBM Research offers the opportunity to grow your career while contributing to breakthroughs that transform industries and change the world.

Your role and responsibilities

IBM Research is seeking a 3 month intern for 2027 with a strong Applied Mathematics background to design and analyze quantum algorithms for solving classical differential equations.

The role emphasizes:

  • Embedding nonlinear dynamics into linear—potentially infinite-dimensional—systems (e.g., via Koopman/Carleman/Kolmogorov lifts, semigroup approaches), and
  • Encoding linear dynamics as efficient quantum circuits that implement time evolution (e.g., block encodings, LCU, QSP).

You will translate mathematical formulations (PDEs/ODEs, linear operators, discretizations, stability/error bounds) into algorithmic primitives suitable for near- and long-term quantum architectures, and benchmark against best-in-class classical methods.

Key responsibilities include:
  • Time-evolution & simulation: Develop and improve end-to-end quantum time-evolution algorithms for s-sparse Hamiltoniansand linear dissipative dynamics (e.g., dissipative perturbations of Hamiltonian systems).
  • Operator embeddings: Design mathematically principled embeddings of differential operators (elliptic/parabolic/hyperbolic; SPDEs where applicable) into forms amenable to block-encoding, LCU, and QSP.
  • Numerics-aware design: Connect discretization choices (finite difference/finite element/spectral) to quantum complexity - analyzing conditioning, stability, and error propagation, and devising preconditioning strategies.
  • Resource estimation: Perform rigorous resource estimation (query complexity, qubits, T-depth/T-count, logical error budgets), identify bottlenecks, and pursue complexity improvements and potential quantum-classical separations.
  • Benchmarking: Compare quantum pipelines to classical baselines (e.g., CG/GMRES/Krylov, multigrid, PDE-constrained optimization), using fair accuracy/complexity criteria.
  • Community engagement: Collaborate across quantum and applied math communities (dynamical systems, numerical linear algebra, control), contribute to working groups, and co-author publications.
Why this is exciting for Applied Mathematicians
  • Direct line from theory to implementation: Operator theory, semigroups, and discretization analysis carry over cleanly to block encodings and QSP/LCU-based evolutions.
  • Numerical linear algebra at the core: Conditioning, sparsity, preconditioning, and model reduction (e.g., POD/DMD, balanced truncation) can materially change quantum resource counts.
  • Impact across domains: Methods extend to PDEs arising in control, inverse problems, materials, and fluid/transport systems, with opportunities to show clear algorithmic separations.
Required education

Doctorate Degree

Preferred education

None

Required technical and professional expertise
  • Enrolled in a PhD during the full duration of the internship
  • Research experience in Applied Mathematics or closely related fields (e.g., numerical analysis, dynamical systems, control, optimization, probability/information theory).
  • Demonstrated depth in differential equations and operator-theoretic methods (e.g., semigroups, stability, dissipativity, functional analysis) or numerical linear algebra for large-scale systems (sparse operators, Krylov methods, preconditioning).
  • Experience prototyping in Python (NumPy/SciPy/Matplotlib) and interest in applying ideas within Qiskit or similar frameworks.

If you already have experience with quantum algorithms for differential equations (e.g., QSP, LCU, sparse Hamiltonian simulation, block encodings), that’s ideal. Otherwise, a strong applied math foundation and a clear motivation to pivot into quantum algorithms is highly valued.

Preferred technical and professional experience
  • Publications in applied math, numerical analysis, or quantum algorithms (journals or top-tier conferences).
  • Experience with discretization methods (FEM/FDM/spectral), PDE solvers (CG/GMRES/multigrid), and conditioning/preconditioning analysis.
  • Background in model reduction (POD/DMD, balanced truncation) or Koopman/Carleman embeddings.
  • Familiarity with Qiskit or quantum simulation stacks (not mandatory if you have strong math fundamentals and are eager to learn).
  • Experience with Git/GitHub and collaborative research.
  • Experience running quantum demonstrations/experiments or numerical benchmarks on large-scale classical systems.
  • Experience writing proposals and participating in grants.
ABOUT BUSINESS UNIT

IBM Research is the organic growth engine of IBM and an innovation engine for our customers and partners. As part of this mission, IBM Research anticipates and examines 'What's Next in Computing' to ultimately create and integrate the technologies the world relies upon to solve big challenges and unlock new opportunities. We create and pioneer new markets for IBM, our partners and customers as exemplified in our ongoing quest to reach practical and large-scale quantum computing. Across IBM Research, we realize the power and potential to accelerate discovery with our partners and clients by combining the power of high performance computing, AI, and Quantum, all integrated through the hybrid cloud.

YOUR LIFE @ IBM

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Being an IBMer means you’ll be able to learn and develop yourself and your career, you’ll be encouraged to be courageous and experiment everyday, all whilst having continuous trust and support in an environment where everyone can thrive whatever their personal or professional background.

Our IBMers are growth minded, always staying curious, open to feedback and learning new information and skills to constantly transform themselves and our company. They are trusted to provide on-going feedback to help other IBMers grow, as well as collaborate with colleagues keeping in mind a team focused approach to include different perspectives to drive exceptional outcomes for our customers. The courage our IBMers have to make critical decisions everyday is essential to IBM becoming the catalyst for progress, always embracing challenges with resources they have to hand, a can-do attitude and always striving for an outcome focused approach within everything that they do.

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ABOUT IBM

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Restlessly reinventing since 1911, we are not only one of the largest corporate organizations in the world, we’re also one of the biggest technology and consulting employers, with many of the Fortune 500 companies relying on the IBM Cloud to run their business.

At IBM, we pride ourselves on being an early adopter of artificial intelligence, quantum computing and blockchain. Now it’s time for you to join us on our journey to being a responsible technology innovator and a force for good in the world.

IBM is proud to be an equal-opportunity employer. All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, gender, gender identity or expression, sexual orientation, national origin, genetics, pregnancy, disability, neurodivergence, age, or other characteristics protected by the applicable law. IBM is also committed to compliance with all fair employment practices regarding citizenship and immigration status.

Job Title

Intern 2027: Quantum Algorithms for Differential Equations (Math)

Job ID

134552

City / Township / Village

Dublin

State / Province

Dublin

Country

Ireland

Work arrangement

Hybrid

Area of work

Research

Employment type

Intern (Fixed Term)

Position type

Internship

Some travel may be required based on business demand

Company

(0066) IBM Ireland Limited

Shift

General (daytime)

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