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10 of 10 publications

Starting a public research journalJournal

Why I'm keeping a public, read-only journal alongside the papers and notes — a place to share writing and updates directly, without turning every page into a comment thread.

Variational Quantum Eigensolvers for Molecular Ground-State Energiespreprint

We review the variational quantum eigensolver (VQE) as a near-term route to estimating molecular ground-state energies, formalise the variational principle it rests on, and analyse how the choice of ansatz and the measurement cost of a Pauli-decomposed Hamiltonian govern its practicality. A hybrid classical/quantum optimisation loop is described, and the conditions under which barren plateaus erase the method's advantage are made explicit.

Building an independent interdisciplinary research instituteresearch note

Thinking through what it would take to build a small independent research institute alongside my academic development: how it should be structured, how it could collaborate with established laboratories and universities, and how fundamental research might eventually lead to publications, intellectual property, or spinouts.

Heterogeneous scientific computing across CPU, GPU and QPU systemsresearch note

Working through how CPUs, GPUs, simulators, and QPUs should interact inside a research environment, including orchestration, data movement, workload placement, reproducibility, and where quantum subroutines actually belong in a larger classical computing pipeline.

Scientific computing architecturePlatform

A computational foundation for numerical research, AI, simulation, formal verification and heterogeneous CPU/GPU/QPU execution.

Neuromorphic computation from algorithms to physical systemsworking paper

Exploring how data structures, plasticity, memory, neural dynamics, and biologically inspired representations might translate into computational primitives before deciding how those ideas should map onto hardware.

Neuromorphic computational foundationsActive direction

Data structures, plasticity, memory systems, sparse computation, biologically inspired representations and runtime-to-device mappings.

Formal methods for quantum research workflowsworking paper

Exploring how Lean, Coq, Isabelle/HOL, Z3, and TLA+ could complement tools such as Qiskit, PennyLane, Braket, and QuTiP — from mathematical specifications and proofs to circuit verification and the infrastructure coordinating classical and quantum execution.

Hybrid neuromorphic/quantum systemsLong horizon

Relationships among neuromorphic computation, quantum machine learning, optoelectronic systems and emerging intelligent hardware.