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quant-ph2026

Digital techniques for the frustrated Ising ring: the role of counter-diabatic terms

Kiran Thengil, Vincenzo Roberto Arezzo, Giuseppe E. Santoro

We investigate the role of local counter-diabatic (CD) terms in enhancing the performance of discrete-time digital protocols for a frustrated Ising ring, a system with an exponenti…

quant-ph2026

Continuous-time quantum control across an exponentially small bottleneck in a frustrated Ising ring model

Vincenzo Roberto Arezzo, Kiran Thengil, Giuseppe Santoro

Continuous-time Quantum Annealing (QA) is a strategy for preparing the ground state of nontrivial many-body systems. In its standard form, the dynamics is generated by a time-depen…

quant-ph2025

Digital controllability of transverse field Ising chains

Vincenzo Roberto Arezzo, Ruiyi Wang, Kiran Thengil +2

Quantum Annealing (QA) encounters limitations when the energy gap along the annealing path becomes exponentially small, leading to impractically long runtimes. In contrast, the suc…

quant-ph2025

From Exponential to Quadratic: Optimal Control for a Frustrated Ising Ring Model

Ruiyi Wang, Vincenzo Roberto Arezzo, Kiran Thengil +2

Exponentially small spectral gaps are known to be the crucial bottleneck for traditional Quantum Annealing (QA) based on interpolating between two Hamiltonians, a simple driving te…

quant-ph2024

Number-operator-based inverse engineering technique in a two level system

Kiran Thengil

This paper experimentally realize a new method for shortcuts to adiabaticity, number operator based inverse engineering method (NOBIE), using quantum computers built with transmon…