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Measurement-Based Interference in Quantum Computation
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作者 徐酉阳 《Communications in Theoretical Physics》 SCIE CAS CSCD 2013年第9期289-295,共7页
The interference has been measured by the visibility in two-level systems, which, however, does not work for multi-level systems. We generalize a measure of the interference based on decoherence process, consistent wi... The interference has been measured by the visibility in two-level systems, which, however, does not work for multi-level systems. We generalize a measure of the interference based on decoherence process, consistent with the visibility in qubit systems. By taking duster states as examples, we show in the one-way quantum computation that the gate fidelity is proportional to the interference of the measured qubit and is inversely proportional to the interference of all register qubits. We also find that the interference increases with the number of the computing steps. So we conjecture that the interference may be the source of the speedup of the one-way quantum computation. 展开更多
关键词 quantum interference quantum computation quantum speedup
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Quantum speed limit time of a two-level atom under different quantum feedback control 被引量:1
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作者 余敏 方卯发 邹红梅 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第1期253-257,共5页
We investigate the quantum speed limit time (QSLT) of a two-level atom under quantum-jump-based feedback control or homodyne-based feedback control. Our results show that the two different feedback control schemes h... We investigate the quantum speed limit time (QSLT) of a two-level atom under quantum-jump-based feedback control or homodyne-based feedback control. Our results show that the two different feedback control schemes have different influences on the evolutionary speed. By adjusting the feedback parameters, the quantum-jump-based feedback control can induce speedup of the atomic evolution from an excited state, but the homodyne-based feedback control cannot change the evolutionary speed. Additionally, the QSLT for the whole dynamical process is explored. Under the quantum-jump-based feedback control, the QSLT displays oscillatory behaviors, which implies multiple speed-up and speed-down processes during the evolution. While, the homodyne-based feedback control can accelerate the speed-up process and improve the uniform speed in the uniform evolution process. 展开更多
关键词 quantum speed limit time quantum feedback control speedup
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系统动力学演化中量子加速的研究
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作者 闫丽 《量子电子学报》 CAS CSCD 北大核心 2021年第3期327-331,共5页
在一个二能级原子与单模腔场相互作用的系统中,基于归一化条件获得原子的密度矩阵及原子处于激发态的布居数,给出了系统演化的量子加速公式。采用纵向加速和横向加速来描述系统动力学演化的过程,利用数值计算的方法讨论了原子与腔场的... 在一个二能级原子与单模腔场相互作用的系统中,基于归一化条件获得原子的密度矩阵及原子处于激发态的布居数,给出了系统演化的量子加速公式。采用纵向加速和横向加速来描述系统动力学演化的过程,利用数值计算的方法讨论了原子与腔场的耦合强度和演化时间对系统演化加速的影响。研究结果表明腔与原子的耦合能够加速量子态的纵向演化;随着演化时间的增加,量子态的横向加速增强,并伴随着周期性振荡。 展开更多
关键词 量子光学 动力学演化 量子加速 量子速度极限时间
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Foundations of Holographic Quantum Computation
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作者 Logan Nye 《Journal of Applied Mathematics and Physics》 2025年第1期11-60,共50页
We present a comprehensive mathematical framework establishing the foundations of holographic quantum computing, a novel paradigm that leverages holographic phenomena to achieve superior error correction and algorithm... We present a comprehensive mathematical framework establishing the foundations of holographic quantum computing, a novel paradigm that leverages holographic phenomena to achieve superior error correction and algorithmic efficiency. We rigorously demonstrate that quantum information can be encoded and processed using holographic principles, establishing fundamental theorems characterizing the error-correcting properties of holographic codes. We develop a complete set of universal quantum gates with explicit constructions and prove exponential speedups for specific classes of computational problems. Our framework demonstrates that holographic quantum codes achieve a code rate scaling as O(1/logn), superior to traditional quantum LDPC codes, while providing inherent protection against errors via geometric properties of the code structures. We prove a threshold theorem establishing that arbitrary quantum computations can be performed reliably when physical error rates fall below a constant threshold. Notably, our analysis suggests certain algorithms, including those involving high-dimensional state spaces and long-range interactions, achieve exponential speedups over both classical and conventional quantum approaches. This work establishes the theoretical foundations for a new approach to quantum computation that provides natural fault tolerance and scalability, directly addressing longstanding challenges of the field. 展开更多
关键词 Holographic quantum Computing Error Correction Universal quantum Gates Exponential speedups Fault Tolerance
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Quantum advantages for image filtering on images with efficient encoding and lower-bounded signal-to-noise ratio
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作者 Zidong Cui Shan Jin +1 位作者 Akira Sone Xiaoting Wang 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2024年第9期2-12,共11页
Quantum image processing has long been a fascinating field,but establishing the existence of quantum speedup for all images remains challenging.In this study,we aim to identify a subset of images for which a quantum a... Quantum image processing has long been a fascinating field,but establishing the existence of quantum speedup for all images remains challenging.In this study,we aim to identify a subset of images for which a quantum algorithm can be developed with a guaranteed advantage.Specifically,we present a quantum image filtering algorithm that exhibits an exponential speedup for efficiently encoded images with a lower-bounded signal-to-noise ratio.Our approach relies on a fixed-point Grover's search to emulate the effect of Hadamard multiplication with the filtering function.To demonstrate its effectiveness,we apply our method to three typical filtering problems.Additionally,we emphasize the significance of the efficient-encoding assumption by illustrating that the quantum speedup may diminish for images lacking efficient encoding.Our work underscores the importance of exploring image types and features to realize potential quantum advantages in image processing. 展开更多
关键词 quantum computing quantum image filtering quantum speedup
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基于角度的量子异常检测算法
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作者 饶洪淼 吁超华 +2 位作者 吴英培 刘德喜 刘喜平 《中国科学:物理学、力学、天文学》 北大核心 2025年第4期63-72,共10页
异常检测是机器学习和数据挖掘的一项重要任务,在金融欺诈检测、网络入侵检测和医疗保健等领域发挥着关键作用.基于角度的异常检测(Angle-Based Outlier Detection,ABOD)算法是目前最常用的异常检测方法之一,其核心步骤是计算每个样本... 异常检测是机器学习和数据挖掘的一项重要任务,在金融欺诈检测、网络入侵检测和医疗保健等领域发挥着关键作用.基于角度的异常检测(Angle-Based Outlier Detection,ABOD)算法是目前最常用的异常检测方法之一,其核心步骤是计算每个样本点与其他点的距离向量之间的角度方差,并将角度方差低于某个阈值的点标记为异常点.经典ABOD算法的时间复杂度关于样本数量M的规模为O(M3),这使得该算法难以高效处理大规模数据集.为此,本文提出一个量子ABOD算法,该算法利用量子幅度估计技术,以量子并行方式计算所有点的角度方差,并进一步利用量子幅度放大技术搜索出异常点.所提量子ABOD算法的时间复杂度关于M的规模为O[√M log(M)],与经典ABOD算法相比实现了M的多项式级加速. 展开更多
关键词 基于角度的异常检测 量子算法 多项式级加速
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