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From the 1 of 20 linked papers with an AI index.

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20242026
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20 papers

physics.optics2026

A re-entrant chip-free-space photonic interface for telecom-to-Rubidium spectroscopy

Jia-Lin Chen, Ruixin Zhou, Deng-Hong Liu +13

The paper presents a re‑entrant chip‑free‑space interface where a thin‑film lithium niobate photonic circuit frequency‑doubles telecom light to 780 nm, sends it through a rubidium…

quant-ph2026

Quantum light source with lithium tantalate for scalable photonic quantum circuits

Yun-Ru Fan, Bo-Wen Chen, Dan Xu +13

Thin-film lithium tantalate (TFLT) has emerged as a promising integrated photonic platform owing to its low photorefractive noise, high optical damage threshold, and reduced birefr…

physics.optics2026

Magnetic-free optical mode degeneracy lifting in lithium niobate microring resonators

Xin-Biao Xu, Zheng-Xu Zhu, Yuan-Hao Yang +9

Breaking time-reversal symmetry in integrated photonics without magnetic fields remains a fundamental challenge. We demonstrate phonon-induced non-reciprocity through direct liftin…

quant-ph2025

All-optical control and multiplexed readout of multiple superconducting qubits

Xiaoxuan Pan, Chuanlong Ma, Jia-Qi Wang +12

Superconducting quantum circuits operate at millikelvin temperatures, typically requiring independent microwave cables for each qubit for connecting room-temperature control and re…

quant-ph2025

Giant-atom quantum acoustodynamics in hybrid superconducting-phononic integrated circuits

Lintao Xiao, Bo Zhang, Yu Zeng +11

We demonstrate a giant atom by coupling a superconducting transmon qubit to a lithium niobate phononic waveguide at two points separated by about 600 acoustic wavelengths, with a p…

quant-ph2025

Scalable Optical Links for Controlling Bosonic Quantum Processors

Chuanlong Ma, Jia-Qi Wang, Linze Li +13

Superconducting quantum computing has the potential to revolutionize computational capabilities. However, scaling up large quantum processors is limited by the cumbersome and heat-…