Large-scale digital quantum simulations require thousands of fundamental entangling gates to construct the simulated dynamics. Despite success in a variety of small-scale simulations, quantum information processing platforms have hitherto failed to demonstrate the combination of precise control and scalability required to systematically outmatch classical simulators. We analyse how fast gates could enable trapped-ion quantum processors to achieve the requisite scalability to outperform classical computers without error correction. We analyze the performance of a large-scale digital simulator, and find that fidelity of around 70% is realizable for p-pulse infidelities below 10(-5) in traps subject to realistic rates of heating and dephasing....
Besides being one of the most pristine qubits, the trapped ion technology provides novel ways to gen...
<p>The challenge of building scalable quantum computer lies in striking appropriate balance between ...
Quantum simulation offers the possibility of using a controllable quantum-mechanical system to imple...
Large-scale digital quantum simulations require thousands of fundamental entangling gates to constru...
Large-scale digital quantum simulations require thousands of fundamental entangling gates to constru...
Most attempts to produce a scalable quantum information processing platform based on ion traps have ...
A digital quantum simulator is an envisioned quantum device that can be programmed to efficiently si...
Trapped ions are a promising platform for universal quantum computing, but are currently limited in ...
We theoretically investigate the use of fast pulsed two-qubit gates for trapped ion quantum computin...
A digital quantum simulator is an envisioned quantum device that can be pro-grammed to efficiently s...
Trapped ions are a promising platform for experimental quantum computing, possessing the longest dec...
Radio-frequency-induced micromotion in trapped ion systems is typically minimized or circumvented to...
We present an efficient approach to optimizing pulse sequences for implementing fast entangling two-...
Besides being one of the most pristine qubits, the trapped ion technology provides novel ways to gen...
We propose a method to achieve scalable quantum computation based on fast quantum gates on an array ...
Besides being one of the most pristine qubits, the trapped ion technology provides novel ways to gen...
<p>The challenge of building scalable quantum computer lies in striking appropriate balance between ...
Quantum simulation offers the possibility of using a controllable quantum-mechanical system to imple...
Large-scale digital quantum simulations require thousands of fundamental entangling gates to constru...
Large-scale digital quantum simulations require thousands of fundamental entangling gates to constru...
Most attempts to produce a scalable quantum information processing platform based on ion traps have ...
A digital quantum simulator is an envisioned quantum device that can be programmed to efficiently si...
Trapped ions are a promising platform for universal quantum computing, but are currently limited in ...
We theoretically investigate the use of fast pulsed two-qubit gates for trapped ion quantum computin...
A digital quantum simulator is an envisioned quantum device that can be pro-grammed to efficiently s...
Trapped ions are a promising platform for experimental quantum computing, possessing the longest dec...
Radio-frequency-induced micromotion in trapped ion systems is typically minimized or circumvented to...
We present an efficient approach to optimizing pulse sequences for implementing fast entangling two-...
Besides being one of the most pristine qubits, the trapped ion technology provides novel ways to gen...
We propose a method to achieve scalable quantum computation based on fast quantum gates on an array ...
Besides being one of the most pristine qubits, the trapped ion technology provides novel ways to gen...
<p>The challenge of building scalable quantum computer lies in striking appropriate balance between ...
Quantum simulation offers the possibility of using a controllable quantum-mechanical system to imple...