From the 1 of 8 linked papers with an AI index.
8 papers
Lindbladian quantization of mechanical systems with nonholonomic constraints
Daniel Schubring, Sriram Ganeshan
The paper develops a method to quantize mechanical systems with nonholonomic (velocity) constraints by modeling them as Markovian open quantum systems using Lindblad dynamics, and…
Odd fluids from chiral cellular automata
Andrew A. Allocca, Shiva Heidari, Thomas Iadecola +3
Cellular automata are discrete dynamical systems defined on a lattice, in which each site carries a finite set of states that evolve in time according to local deterministic rules.…
Measurement and feedback-driven adaptive dynamics in the classical and quantum kicked top
Mahaveer Prasad, Ahana Chakraborty, Thomas Iadecola +4
In classical dynamical systems, stochastic feedback can stabilize otherwise unstable periodic orbits, giving rise to distinct controlled and uncontrolled phases as the rate of cont…
Universality of stochastic control of quantum chaos with measurement and feedback
Andrew A. Allocca, Devesh K. Verma, Sriram Ganeshan +1
We investigate universal features of measurement-and-feedback control of quantum chaotic dynamics by examining the quantum Arnold cat map, a paradigmatic model of quantum chaos. In…
Quantum geometry of the rotating shallow water model
Sriram Ganeshan, Alan T. Dorsey
The rotating shallow water equations (RSWE) are a mainstay of atmospheric and oceanic modeling, and their wave dynamics has close analogues in settings ranging from two-dimensional…
Measuring the Hall Viscosity of the Laughlin State on Noisy Quantum Computers
Ammar Kirmani, Andrew A. Allocca, Jian-Xin Zhu +3
Hall viscosity is a quantized nondissipative stress response of a fractional quantum Hall (FQH) fluid to adiabatic geometric deformations. Despite strong theoretical interest, its…