activity
20162021
most citedGround-state energy estimation of the water molecule on a trapped ion quantum computer

35 citations · 47 across the 3 of their papers we have counts for

collaborators
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10 papers · 1 filter

quant-ph2021

Two-qubit gates in a trapped-ion quantum computer by engineering motional modes

Ming Li, Jason Amini, Yunseong Nam

A global race towards developing a gate-based, universal quantum computer that one day promises to unlock the never before seen computational power has begun and the biggest challe…

quant-ph2021

Optimizing Electronic Structure Simulations on a Trapped-ion Quantum Computer using Problem Decomposition

Yukio Kawashima, Erika Lloyd, Marc P. Coons +12

Quantum computers have the potential to advance material design and drug discovery by performing costly electronic structure calculations. A critical aspect of this application req…

quant-ph2021

Efficient, stabilized two-qubit gates on a trapped-ion quantum computer

Reinhold Blümel, Nikodem Grzesiak, Nhung H. Nguyen +5

Quantum computing is currently limited by the cost of two-qubit entangling operations. In order to scale up quantum processors and achieve a quantum advantage, it is crucial to eco…

quant-ph2020

Generalized Hamiltonian to describe imperfections in ion-light interaction

Ming Li, Kenneth Wright, Neal C. Pisenti +3

We derive a general Hamiltonian that governs the interaction between an -ion chain and an externally controlled laser field, where the ion motion is quantized and the laser fiel…

quant-ph2019

Efficient Arbitrary Simultaneously Entangling Gates on a trapped-ion quantum computer

Nikodem Grzesiak, Reinhold Blümel, Kristin Beck +7

Efficiently entangling pairs of qubits is essential to fully harness the power of quantum computing. Here, we devise an exact protocol that simultaneously entangles arbitrary pairs…

quant-ph2019

Toward convergence of effective field theory simulations on digital quantum computers

Omar Shehab, Kevin A. Landsman, Yunseong Nam +5

We report results for simulating an effective field theory to compute the binding energy of the deuteron nucleus using a hybrid algorithm on a trapped-ion quantum computer. Two inc…