Reconfigurable ultrafast perovskite polariton logic gates via nonlinear dynamics

Fuente: arXiv
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Main Authors: Zhang, Yuyang, Zhu, Zhuoya, Zeng, Xin, Zhang, Shuai, Deng, Xinyi, Lan, Tian, Zhu, Changhai, Tang, Kwok Kwan, Jia, Qinglin, Xia, Yuexing, Gong, Yiyang, Du, Wenna, Li, Feng, Su, Rui, Ma, Xuekai, Liu, Xinfeng, Zhang, Qing
Format: Preprint
Published: 2026
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author Zhang, Yuyang
Zhu, Zhuoya
Zeng, Xin
Zhang, Shuai
Deng, Xinyi
Lan, Tian
Zhu, Changhai
Tang, Kwok Kwan
Jia, Qinglin
Xia, Yuexing
Gong, Yiyang
Du, Wenna
Li, Feng
Su, Rui
Ma, Xuekai
Liu, Xinfeng
Zhang, Qing
author_facet Zhang, Yuyang
Zhu, Zhuoya
Zeng, Xin
Zhang, Shuai
Deng, Xinyi
Lan, Tian
Zhu, Changhai
Tang, Kwok Kwan
Jia, Qinglin
Xia, Yuexing
Gong, Yiyang
Du, Wenna
Li, Feng
Su, Rui
Ma, Xuekai
Liu, Xinfeng
Zhang, Qing
contents Exciton-polaritons provide a great platform for developing ultrafast all-optical logic gates for quantum and optical chips. However, progress toward practical polariton logic remains limited due to incomplete logical functionality on a single device. Herein, we present a single-device perovskite polariton platform enabling reconfigurable, ultrafast logic gates with functional completeness. The device consists of an optically trapped perovskite microwire, generating well-controlled non-equilibrium polariton condensation states for multiple logic operation channels. By tailoring the power of signal and gate beams, the same device is programmed to execute three basic Boolean functions (AND,OR,and NOT) and a high-order XOR function with a high on/off ratio of 21 dB, and a fast response time 6.7 ps. The reconfigurability arises from the selective activation of different nonlinear responses of polariton condensates, including amplification, seeding state transitions, and nonlinear interaction. These results provide valuable insights for advancing exciton-polariton logic gates.
format Preprint
id arxiv_https___arxiv_org_abs_2604_21445
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Reconfigurable ultrafast perovskite polariton logic gates via nonlinear dynamics
Zhang, Yuyang
Zhu, Zhuoya
Zeng, Xin
Zhang, Shuai
Deng, Xinyi
Lan, Tian
Zhu, Changhai
Tang, Kwok Kwan
Jia, Qinglin
Xia, Yuexing
Gong, Yiyang
Du, Wenna
Li, Feng
Su, Rui
Ma, Xuekai
Liu, Xinfeng
Zhang, Qing
Optics
Exciton-polaritons provide a great platform for developing ultrafast all-optical logic gates for quantum and optical chips. However, progress toward practical polariton logic remains limited due to incomplete logical functionality on a single device. Herein, we present a single-device perovskite polariton platform enabling reconfigurable, ultrafast logic gates with functional completeness. The device consists of an optically trapped perovskite microwire, generating well-controlled non-equilibrium polariton condensation states for multiple logic operation channels. By tailoring the power of signal and gate beams, the same device is programmed to execute three basic Boolean functions (AND,OR,and NOT) and a high-order XOR function with a high on/off ratio of 21 dB, and a fast response time 6.7 ps. The reconfigurability arises from the selective activation of different nonlinear responses of polariton condensates, including amplification, seeding state transitions, and nonlinear interaction. These results provide valuable insights for advancing exciton-polariton logic gates.
title Reconfigurable ultrafast perovskite polariton logic gates via nonlinear dynamics
topic Optics
url https://arxiv.org/abs/2604.21445