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Amplitude-noise-resilient entangling gates for trapped ions

Authors :
Le, Nguyen H.
Orozco-Ruiz, Modesto
Kulmiya, Sahra A.
Urquhart, James G.
Hile, Samuel J.
Hensinger, Winfried K.
Mintert, Florian
Publication Year :
2024

Abstract

Noise resilience of quantum information processing is a crucial precondition to reach the fault-tolerance threshold. While resilience to many types of noise can be achieved through suitable control schemes, resilience to amplitude noise seems to be elusive within the common harmonic approximation for the bus mode of trapped ions. We show that weak an-harmonicities admit control schemes that achieve amplitude noise-resilience consistent with state-of-the-art experimental requirements, and that the required an-harmonicities can be achieved with current standards of micro-structured traps or even the intrinsically an-harmonic Coulomb interaction.

Subjects

Subjects :
Quantum Physics

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2407.03047
Document Type :
Working Paper