Finite time path field theory perturbative methods for local quantum spin chain quenches

izvorni znanstveni rad

izvorni znanstveni rad

Finite time path field theory perturbative methods for local quantum spin chain quenches

Vrsta prilog u časopisu
Tip izvorni znanstveni rad
Godina 2024
Časopis Universe
Volumen 10
Svesčić 10
Stranice str. 384-402
DOI 10.3390/universe10100384
EISSN 2218-1997
Status objavljeno

Sažetak

We discuss local magnetic field quenches using perturbative methods of finite time path field theory (FTPFT) in the following spin chains: Ising and XY in a transverse magnetic field. Their common characteristics are: (i) they are integrable via mapping to a second quantized noninteracting fermion problem; and (ii) when the ground state is nondegenerate (true for finite chains except in special cases), it can be represented as a vacuum of Bogoliubov fermions. By switching on a local magnetic field perturbation at finite time, the problem becomes nonintegrable and must be approached via numeric or perturbative methods. Using the formalism of FTPFT based on Wigner transforms (WTs) of projected functions, we show how to: (i) calculate the basic “bubble” diagram in the Loschmidt echo (LE) of a quenched chain to any order in the perturbation; and (ii) resum the generalized Schwinger–Dyson equation for the fermion two-point retarded functions in the “bubble” diagram, hence achieving the resummation of perturbative expansion of LE for a wide range of perturbation strengths under certain analyticity assumptions. Limitations of the assumptions and possible generalizations beyond it and also for other spin chains are further discussed.

Ključne riječi

finite time path field theory; quenches; Loschmidt echo; spin chains; perturbative methods