We present a completely new approach to quantum circuit optimisation, based on the ZX-calculus. We first interpret quantum circuits as ZX-diagrams, which provide a flexible, lower-level language for describing quantum computations graphically. Then, using the rules of the ZX-calculus, we give a simplification strategy for ZX-diagrams based on the two graph transformations of local complementation and pivoting and show that the resulting reduced diagram can be transformed back into a quantum circuit. While little is known about extracting circuits from arbitrary ZX-diagrams, we show that the underlying graph of our simplified ZX-diagram always has a graph-theoretic property called generalised flow, which in turn yields a deterministic circui...
International audienceThe ZX-Calculus is a powerful graphical language for quantum mechanics and qua...
A leading choice of error correction for scalable quantum computing is the surface code with lattice...
The ZX-calculus is a powerful diagrammatic language for quantum mechanics and quantum information pr...
We present a completely new approach to quantum circuit optimisation, based on the ZX-calculus. We f...
International audienceWe present a completely new approach to quantum circuit optimisation, based on...
The ZX-calculus is a graphical language for reasoning about quantum computation using ZX-diagrams, a...
International audienceWe present a complete optimization procedure for hybrid quantum-classical circ...
Diagrammatic representations of quantum algorithms and circuits offer novel approaches to their desi...
In the near term, programming quantum computers will remain severely limited by low quantum volumes....
We present a system of equations between Clifford circuits, all derivable in the ZX-calculus, and fo...
We introduce an enhanced technique for strong classical simulation of quantum circuits which combine...
In the near term, programming quantum computers will remain severely limited by low quantum volumes....
The ZX-Calculus is a powerful and intuitive graphical language, based on category theory, that allow...
We introduce the Scalable ZX-calculus (SZX-calculus for short), a formal and compact graphical langu...
Graphical languages offer intuitive and rigorous formalisms for quantum physics. They can be used to...
International audienceThe ZX-Calculus is a powerful graphical language for quantum mechanics and qua...
A leading choice of error correction for scalable quantum computing is the surface code with lattice...
The ZX-calculus is a powerful diagrammatic language for quantum mechanics and quantum information pr...
We present a completely new approach to quantum circuit optimisation, based on the ZX-calculus. We f...
International audienceWe present a completely new approach to quantum circuit optimisation, based on...
The ZX-calculus is a graphical language for reasoning about quantum computation using ZX-diagrams, a...
International audienceWe present a complete optimization procedure for hybrid quantum-classical circ...
Diagrammatic representations of quantum algorithms and circuits offer novel approaches to their desi...
In the near term, programming quantum computers will remain severely limited by low quantum volumes....
We present a system of equations between Clifford circuits, all derivable in the ZX-calculus, and fo...
We introduce an enhanced technique for strong classical simulation of quantum circuits which combine...
In the near term, programming quantum computers will remain severely limited by low quantum volumes....
The ZX-Calculus is a powerful and intuitive graphical language, based on category theory, that allow...
We introduce the Scalable ZX-calculus (SZX-calculus for short), a formal and compact graphical langu...
Graphical languages offer intuitive and rigorous formalisms for quantum physics. They can be used to...
International audienceThe ZX-Calculus is a powerful graphical language for quantum mechanics and qua...
A leading choice of error correction for scalable quantum computing is the surface code with lattice...
The ZX-calculus is a powerful diagrammatic language for quantum mechanics and quantum information pr...