activity
20172021
most citedComposite nonadiabatic holonomic quantum computation

62 citations · 94 across the 2 of their papers we have counts for

collaborators

6 papers

hep-ex2021

Measurement of the branching fraction of leptonic decay via

M. Ablikim, M. N. Achasov, P. Adlarson +503

By analyzing of annihilation data collected at the center-of-mass energies between 4.178 and 4.226\,GeV with the BESIII detector, we determine the…

hep-ex2021

Measurements of the branching fractions of and

BESIII Collaboration, M. Ablikim, M. N. Achasov +505

Based on events collected with the BESIII detector at BEPCII, the branching fraction of the isospin violating decay

hep-ex2019

Search for the decay

M. Ablikim, M. N. Achasov, P. Adlarson +479

Using a data sample of events collected with the BESIII detector, a search for via is performed for the first time. No significant $η…

hep-ex2019

Amplitude analysis of

M. Ablikim, M. N. Achasov, S. Ahmed +458

The decay is studied with an amplitude analysis using a data set of 2.93${\mbox{\,fb}^{-1}}$ of collisions at the

quant-ph201762 cited

Composite nonadiabatic holonomic quantum computation

G. F. Xu, P. Z. Zhao, T. H. Xing +2

Nonadiabatic holonomic quantum computation has robust feature in suppressing control errors because of its holonomic feature. However, this kind of robust feature is challenged sin…

quant-ph201732 cited

Robust paths to realize nonadiabatic holonomic gates

G. F. Xu, P. Z. Zhao, D. M. Tong +1

To realize one desired nonadiabatic holonomic gate, various equivalent evolution paths can be chosen. However, in the presence of errors, these paths become inequivalent. In this p…