While standard approaches to quantum simulation require a number of qubits proportional to the number of simulated particles, current noisy quantum computers are limited to tens of qubits. With the technique of holographic quantum simulation, a D-dimensional system can be simulated with a (D−1)-dimensional subset of qubits, enabling the study of systems significantly larger than current quantum computers. Using circuits derived from the multiscale entanglement renormalization ansatz (MERA), we accurately prepare the ground state of an L=32 critical, nonintegrable perturbed Ising model and measure long-range correlations on the ten-qubit Quantinuum trapped-ion computer. We introduce generalized MERA networks that interpolate between MERA and...
Quantum cellular automata (QCA) evolve qubits in a quantum circuit depending only on the states of t...
The multiscale entanglement renormalization ansatz describes quantum many-body states by a hierarchi...
We propose and test a scheme for entanglement renormalization capable of addressing large two-dimens...
The study of the properties of quantum mechanical systems of many particles occupies a central role ...
The study of the properties of quantum mechanical systems of many particles occupies a central role ...
We introduce the multiscale entanglement renormalization ansatz, a class of quantum many-body states...
We introduce the multi-scale entanglement renormalization ansatz (MERA), an efficient representation...
We develop holographic quantum simulation techniques to prepare correlated electronic ground states ...
In recent years lots of efforts have been spent in the realization of quantum computers able to repr...
We improve upon a recently introduced efficient quantum state reconstruction procedure targeted to s...
We improve upon a recently introduced efficient quantum state reconstruction procedure targeted to s...
We describe a quantum circuit that produces a highly entangled state of N qubits from which one can ...
A key open question in quantum computing is whether quantum algorithms can potentially offer a signi...
We describe an iterative method to optimize the multiscale entanglement renormalization ansatz for t...
Here, we investigate the use of deep multi-scale entanglement renormalization (DMERA) circuits as a ...
Quantum cellular automata (QCA) evolve qubits in a quantum circuit depending only on the states of t...
The multiscale entanglement renormalization ansatz describes quantum many-body states by a hierarchi...
We propose and test a scheme for entanglement renormalization capable of addressing large two-dimens...
The study of the properties of quantum mechanical systems of many particles occupies a central role ...
The study of the properties of quantum mechanical systems of many particles occupies a central role ...
We introduce the multiscale entanglement renormalization ansatz, a class of quantum many-body states...
We introduce the multi-scale entanglement renormalization ansatz (MERA), an efficient representation...
We develop holographic quantum simulation techniques to prepare correlated electronic ground states ...
In recent years lots of efforts have been spent in the realization of quantum computers able to repr...
We improve upon a recently introduced efficient quantum state reconstruction procedure targeted to s...
We improve upon a recently introduced efficient quantum state reconstruction procedure targeted to s...
We describe a quantum circuit that produces a highly entangled state of N qubits from which one can ...
A key open question in quantum computing is whether quantum algorithms can potentially offer a signi...
We describe an iterative method to optimize the multiscale entanglement renormalization ansatz for t...
Here, we investigate the use of deep multi-scale entanglement renormalization (DMERA) circuits as a ...
Quantum cellular automata (QCA) evolve qubits in a quantum circuit depending only on the states of t...
The multiscale entanglement renormalization ansatz describes quantum many-body states by a hierarchi...
We propose and test a scheme for entanglement renormalization capable of addressing large two-dimens...