4.8 Article

Floquet-Engineering Counterdiabatic Protocols in Quantum Many-Body Systems

Journal

PHYSICAL REVIEW LETTERS
Volume 123, Issue 9, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.123.090602

Keywords

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Funding

  1. Francqui Foundation Fellowship from the Belgian American Educational Foundation
  2. Boston University's Condensed Matter Theory Visitors program
  3. Banco Santander Boston University-National University of Singapore Grant
  4. FWO
  5. NSF [DMR-1813499]
  6. AFOSR [FA9550-16-1-0334]

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Counterdiabatic (CD) driving presents a way of generating adiabatic dynamics at an arbitrary pace, where excitations due to nonadiabaticity are exactly compensated by adding an auxiliary driving term to the Hamiltonian. While this CD term is theoretically known and given by the adiabatic gauge potential, obtaining and implementing this potential in many-body systems is a formidable task, requiring knowledge of the spectral properties of the instantaneous Hamiltonians and control of highly nonlocal multibody interactions. We show how an approximate gauge potential can be systematically built up as a series of nested commutators, remaining well defined in the thermodynamic limit. Furthermore, the resulting CD driving protocols can be realized up to arbitrary order without leaving the available control space using tools from periodically driven (Floquet) systems. This is illustrated on few- and many-body quantum systems, where the resulting Floquet protocols significantly suppress dissipation and provide a drastic increase in fidelity.

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