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most citedMeasuring Entanglement by Exploiting its Anti-symmetric Nature

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quant-ph20241 cited

Measuring Entanglement by Exploiting its Anti-symmetric Nature

Peyman Azodi, Benjamin Lienhard, Herschel A. Rabitz

Despite significant progress in experimental quantum sciences, measuring entanglement entropy remains challenging. Through a geometric perspective, we reveal the intrinsic anti-sym…

quant-ph2024

Emergence of Light Cones in Long-range Interacting Spin Chains Is Due to Destructive Interference

Peyman Azodi, Herschel A. Rabitz

Despite extensive research on long-range interacting quantum systems, the physical mechanism responsible for the emergence of light cones remains unidentified. This work presents a…

quant-ph2023

Entanglement Propagation in Integrable Heisenberg Chains from a New Lens

Peyman Azodi, Herschel A Rabitz

The exact single-magnon entanglement evolution in Heisenberg chains is obtained using the Quantum Correlation Transfer Function (QCTF) formulation. A dual, i.e., frequency and time…

quant-ph2023

Dynamics and Geometry of Entanglement in Many-Body Quantum Systems

Peyman Azodi, Herschel A Rabitz

A new framework is formulated to study entanglement dynamics in many-body quantum systems along with an associated geometric description. In this formulation, called the Quantum Co…

quant-ph2021

Lyapunov-Based Stabilization and Control of Closed Quantum Systems

Elham Jamalinia, Peyman Azodi, Alireza Khayatian +1

A Lyapunov-based method is presented for stabilizing and controlling of closed quantum systems. The proposed method is constructed upon a novel quantum Lyapunov function of the sys…