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Engineering Dynamically Decoupled Quantum Simulations with Trapped Ions

delete2023-03-31
delete19
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OA
AI
W
W. Morong
K
K. S. Collins *
A
Arinjoy De
E
E. Stavropoulos
T
T. You
C
C. Monroe
DOI:10.1103/PRXQuantum.4.010334delete
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摘要

摘要

En 中文
An external drive can improve the coherence of a quantum many-body system by averaging out noise sources. It can also be used to realize models that are inaccessible in the static limit, through Floquet Hamiltonian engineering. The full possibilities for combining these tools remain unexplored. We develop the requirements needed for a pulse sequence to decouple a quantum many-body system from an external field without altering the intended dynamics. Demonstrating this technique experimentally in an iontrap platform, we show that it can provide a large improvement to coherence in real-world applications. Finally, we engineer an approximate quantum simulation of the Haldane-Shastry model, an exactly solvable paradigm for long-range interacting spins. Our results expand and unify the quantum simulation toolbox.
Keyword:
GROUND-STATE
SPIN
MODEL
CHAIN

期刊

P
PRX Quantum
IF:
11
论文数:
919
被引数:
9.0K

机构

University System of Maryland 封面图
University System of Maryland
学者数:
6.4W
论文数: 5.6W
被引数: 113