2024/10/15 by Anonymous, Anastasia Pipi, Xuecheng Tao +8
Computer Science · Physics and Astronomy · #Quantum Computing Algorithms and Architecture #Quantum Information and Cryptography #Laser-Matter Interactions and Applications
paper · pdf · doi:10.1103/t159-pzlx
Precision measurements of molecules offer an unparalleled paradigm to probe physics beyond the standard model. The rich internal structure within these molecules makes them exquisite sensors for detecting fundamental symmetry violations, local position invariance, and dark matter. While trapping and control of diatomic and a few very simple polyatomic molecules have been experimentally demonstrated, leveraging the complex rovibrational structure of more general polyatomics demands the development of robust and efficient quantum control algorithms. In this study, we present reinforcement-learning quantum-logic spectroscopy (RL-QLS), a general, reinforcement-learning-designed quantum-logic approach to prepare molecular ions in single, pure quantum states. The reinforcement-learning agent optimizes the pulse sequence, each followed by a projective measurement, and probabilistically manipulates the collapse of the quantum system to a single state. The performance of the RL-QLS control algorithm is numerically demonstrated for the polyatomic molecule <a:math xmlns:a="http://www.w3.org/1998/Math/MathML"> <a:mrow> <a:msub> <a:mi mathvariant="normal">H</a:mi> <a:mn>3</a:mn> </a:msub> <a:msup> <a:mrow> <a:mi mathvariant="normal">O</a:mi> </a:mrow> <a:mo>+</a:mo> </a:msup> </a:mrow> </a:math> with 130 thermally populated eigenstates and degenerate transitions within inversion doublets, as well as for <d:math xmlns:d="http://www.w3.org/1998/Math/MathML"> <d:msup> <d:mrow> <d:mi>CaH</d:mi> </d:mrow> <d:mo>+</d:mo> </d:msup> </d:math> under the disturbance of environmental thermal radiation. We expect that the developed theoretical framework can be readily implemented for quantum control of polyatomic molecular ions with densely populated structures, thereby facilitating experimental tests of fundamental theories.