activity
20242026
collaborators

6 papers

quant-ph2026

Multimode Phonon-Number Measurement and Single-shot Superparity Measurement using Dispersive Shifts in a Trapped Ion

Wonhyeong Choi, Jiyong Kang, Kyunghye Kim +3

Dispersive shifts are a widely used tool for bosonic readout and control in circuit quantum electrodynamics, yet they remain relatively unexplored in trapped-ion motional systems.…

quant-ph2026

A rigorous hybridization of variational quantum eigensolver and classical neural network

Minwoo Kim, Kyoung Keun Park, Kyungmin Lee +2

Neural post-processing has been proposed as a lightweight route to enhance variational quantum eigensolvers by learning how to reweight measurement outcomes. In this work, we ident…

quant-ph2026

Phase-Space Topology in a Single-Atom Synthetic Dimension

Kyungmin Lee, Sunkyu Yu, Jiyong Kang +5

We investigate topological features in the synthetic Fock-state lattice (FSL) of a single-atom system described by the quantum Rabi model. By diagonalizing the Hamiltonian, we iden…

physics.atom-ph2025

Radio-Frequency Pseudo-Null Induced by Light in an Ion Trap

Daun Chung, Yonghwan Cha, Hosung Shon +12

In a linear radio-frequency (rf) ion trap, the rf null is the point of zero electric field in the dynamic trapping potential where the ion motion is approximately harmonic. When di…

quant-ph2025

Efficient Quantum Frequency Conversion of Ultra-Violet Single Photons from a Trapped Ytterbium Ion

Seungwoo Yu, Kyungmin Lee, Sumin Park +4

Ion trap system is a leading candidate for quantum network privileged by its long coherence time, high-fidelity gate operations, and the ion-photon entanglement that generates an i…

quant-ph2024

A silicon-based ion trap chip protected from semiconductor charging

Daun Chung, Kwangyeul Choi, Woojun Lee +15

Silicon-based ion trap chips can benefit from existing advanced fabrication technologies, such as multi-metal layer techniques for two-dimensional architectures and silicon photoni…