Compact and programmable large-scale optical processor in free space
arXiv:2506.09802 · doi:10.1038/s41377-026-02236-2
Abstract
Photonic circuits are central to classical and quantum information processing. While integrated technologies dominate, free-space architectures are emerging as attractive alternatives, offering broad bandwidth and direct manipulation of optical modes without confinement in waveguides. A key challenge for scalability lies in circuit depth, as the number of layers manipulating the optical field typically grows with the system size. Here, we introduce a programmable free-space photonic platform that performs high-dimensional unitary transformations using only three layers. Information is encoded in structured light modes defined by circular polarization and quantized transverse momenta, and processed with spatial light modulators interleaved with half-wave plates. We implement unitaries that are equivalent to quantum walks over up to 30 time steps, in one- and two-dimensional lattices, distributing a single input mode across more than 7,000 outputs, where conventional approaches would require tens or hundreds of layers. Despite being restricted to translationally-invariant systems, the platform supports diverse quantum walk dynamics, including disorder, synthetic gauge fields, and topological effects, previously explored only in separate experiments. Using coincidence detection with a time-tagging camera, we show compatibility with quantum optics protocols and provide examples of quantum walks of heralded single photons. These results contribute to establish free-space optical processors as promising resources for high-dimensional quantum simulation and scalable optical information processing.
References in corpus (37)
- Optical spin-to-orbital angular momentum conversion in inhomogeneous anisotropic media
- Integrated Photonic Quantum Technologies
- Quantum walks: a comprehensive review
- Observation of chiral edge states with neutral fermions in synthetic Hall ribbons
- Photonic quantum information processing: a review
- Photonic quantum information processing: a concise review
- Visualizing edge states with an atomic Bose gas in the quantum Hall regime
- Exploring Topological Phases With Quantum Walks
- Efficient and mode selective spatial mode multiplexer based on Multi-Plane Light Conversion
- A 2D Quantum Walk Simulation of Two-Particle Dynamics
- Experimental observation of anomalous topological edge modes in a slowly-driven photonic lattice
- Detection of Zak phases and topological invariants in a chiral quantum walk of twisted photons
- Direct measurement of the quantum geometric tensor in a two-dimensional continuous medium
- Matter-wave diffraction from a quasicrystalline optical lattice
- High-dimensional quantum gates using full-field spatial modes of photons
- Dynamical moments reveal a topological quantum transition in a photonic quantum walk
- Real-space imaging of a topological protected edge state with ultracold atoms in an amplitude-chirped optical lattice
- Programmable linear quantum networks with a multimode fibre
- Imaging and time stamping of photons with nanosecond resolution in Timepix based optical cameras
- Two-dimensional topological quantum walks in the momentum space of structured light
- Effective Theory of Non-Adiabatic Quantum Evolution Based on the Quantum Geometric Tensor
- Inverse-design of high-dimensional quantum optical circuits in a complex medium
- Ultra-long quantum walks via spin-orbit photonics
- Quantum walks of two correlated photons in a 2D synthetic lattice
- Experimental investigation of superdiffusion via coherent disordered Quantum Walks
- Ultrahigh-fidelity spatial mode quantum gates in high-dimensional space by diffractive deep neural networks
- Resource-efficient photonic quantum computation with high-dimensional cluster states
- Bulk detection of time-dependent topological transitions in quenched chiral models
- General Lossless Spatial Polarization Transformations
- Complete vectorial optical mode converter using multi-layer metasurface
- Bloch-Landau-Zener dynamics induced by a synthetic field in a photonic quantum walk
- Efficient Characterizations of Multiphoton States with an Ultra-thin Optical Device
- Programmable quantum circuits in a large-scale photonic waveguide array
- Large-scale free-space photonic circuits in two dimensions
- Manifestation of the Berry connection in chiral lattice systems
- Nonlocal transfer of high-dimensional unitary operations
- A Large-Scale Reconfigurable Multiplexed Quantum Photonic Network