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europepmc
2026
置信度 0.80
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europepmc
2026
置信度 0.80
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europepmc
2026
置信度 0.80
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europepmc
2026
置信度 0.80
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europepmc
2025
置信度 0.80
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europepmc
2026
置信度 0.80
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europepmc
2026
置信度 0.80
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europepmc
2026
置信度 0.80
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europepmc
2026
置信度 0.80
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europepmc
2026
置信度 0.80
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europepmc
2026
置信度 0.80
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europepmc
2026
置信度 0.80
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europepmc
2026
置信度 0.80
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europepmc
2026
置信度 0.80
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europepmc
2026
置信度 0.80
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This paper investigates a novel approach to quantum information transmission within noisy quantum channels – Quantum Error Correction Feedback Compression Coding (QEFCC). The core claim is that by integrating feedback mechanisms with compression coding, signif…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper investigates a novel approach to quantum information transmission within noisy quantum channels – Quantum Error Correction Feedback Compression Coding (QEFCC). The core claim is that by integrating feedback mechanisms with compression coding, signif…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper proposes a novel communication protocol leveraging multi-particle entanglement for non-classical information transmission. The core of the protocol resides in a carefully designed encoding scheme utilizing multi-variable entangled states to mitigate…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper proposes a novel communication protocol leveraging multi-particle entanglement for non-classical information transmission. The core of the protocol resides in a carefully designed encoding scheme utilizing multi-variable entangled states to mitigate…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum-inspired regularization is a novel approach to machine learning that leverages the principles of quantum error correction to enhance model robustness and accuracy. This paper explores the integration of quantum-inspired error correction mechanisms into…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum-inspired regularization is a novel approach to machine learning that leverages the principles of quantum error correction to enhance model robustness and accuracy. This paper explores the integration of quantum-inspired error correction mechanisms into…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper introduces a novel data compression algorithm based on quantum error correction. Traditional data compression methods often struggle with complex data due to inherent limitations in their computational capacity. This research proposes a quantum-enha…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper introduces a novel data compression algorithm based on quantum error correction. Traditional data compression methods often struggle with complex data due to inherent limitations in their computational capacity. This research proposes a quantum-enha…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum entanglement, a cornerstone of quantum technology, is highly susceptible to noise and errors, posing significant challenges in quantum computation and communication. Quantum error correction (QEC) relies heavily on the precise calibration and adjustmen…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum entanglement, a cornerstone of quantum technology, is highly susceptible to noise and errors, posing significant challenges in quantum computation and communication. Quantum error correction (QEC) relies heavily on the precise calibration and adjustmen…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper presents a novel key agreement protocol leveraging the principles of quantum entanglement. The protocol, termed the "Quantum Entanglement Key Agreement Protocol" (QEKAP), aims to establish a shared secret key between two parties, Alice and Bob, with…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper presents a novel key agreement protocol leveraging the principles of quantum entanglement. The protocol, termed the "Quantum Entanglement Key Agreement Protocol" (QEKAP), aims to establish a shared secret key between two parties, Alice and Bob, with…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum error correction is a critical component of quantum information processing, enabling the reliable transmission and manipulation of quantum states. Traditional approaches often rely on static optimization techniques, which can be computationally expensi…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum error correction is a critical component of quantum information processing, enabling the reliable transmission and manipulation of quantum states. Traditional approaches often rely on static optimization techniques, which can be computationally expensi…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum error correction is a critical component of quantum information processing, enabling the reliable transmission and manipulation of quantum states. Traditional quantum error correction methods often rely on complex classical algorithms, struggling to ef…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum error correction is a critical component of quantum information processing, enabling the reliable transmission and manipulation of quantum states. Traditional quantum error correction methods often rely on complex classical algorithms, struggling to ef…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum information storage and retrieval represent a significant challenge and opportunity for advancing quantum technology. Traditional methods often focus on the physical properties of qubits, while a novel approach – topological optimization – offers the p…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum information storage and retrieval represent a significant challenge and opportunity for advancing quantum technology. Traditional methods often focus on the physical properties of qubits, while a novel approach – topological optimization – offers the p…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum error correction is a crucial aspect of quantum information processing, enabling the reliable transmission and manipulation of quantum states. Traditional error correction schemes, relying on redundancy and decoding, have limitations in terms of comple…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum error correction is a crucial aspect of quantum information processing, enabling the reliable transmission and manipulation of quantum states. Traditional error correction schemes, relying on redundancy and decoding, have limitations in terms of comple…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper presents a novel approach to quantum error correction leveraging the topological properties of quantum entanglement. Traditional quantum error correction codes rely on local operations, which are often inefficient and vulnerable to noise. We propose…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper presents a novel approach to quantum error correction leveraging the topological properties of quantum entanglement. Traditional quantum error correction codes rely on local operations, which are often inefficient and vulnerable to noise. We propose…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper investigates the optimization of Quantum Key Distribution (QKD) protocols leveraging the principles of quantum coherence draining. The core claim centers on utilizing the inherent properties of coherence draining to enhance key generation efficiency…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper investigates the optimization of Quantum Key Distribution (QKD) protocols leveraging the principles of quantum coherence draining. The core claim centers on utilizing the inherent properties of coherence draining to enhance key generation efficiency…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper presents a novel quantum information coding scheme based on nonlinear quantum information, focusing on adaptive error correction. The core idea is to exploit the inherent non-linear properties of quantum states to enhance both storage and transmissi…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper presents a novel quantum information coding scheme based on nonlinear quantum information, focusing on adaptive error correction. The core idea is to exploit the inherent non-linear properties of quantum states to enhance both storage and transmissi…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper proposes a novel approach to distributed storage leveraging the unique properties of quantum entanglement. The core claim is that utilizing entanglement enables the construction of a distributed storage system capable of achieving long-range communi…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper proposes a novel approach to distributed storage leveraging the unique properties of quantum entanglement. The core claim is that utilizing entanglement enables the construction of a distributed storage system capable of achieving long-range communi…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper introduces a novel approach to quantum error correction, termed Dynamic Topological Quantum Error Correction Code Generation. The core idea is to leverage the principles of error-correcting codes and quantum topology, dynamically adapting the topolo…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper introduces a novel approach to quantum error correction, termed Dynamic Topological Quantum Error Correction Code Generation. The core idea is to leverage the principles of error-correcting codes and quantum topology, dynamically adapting the topolo…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper investigates the potential of quantum entanglement to revolutionize geometric error correction within complex simulations. We propose a novel system leveraging entangled particles to dynamically detect and correct geometric distortions, offering a s…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper investigates the potential of quantum entanglement to revolutionize geometric error correction within complex simulations. We propose a novel system leveraging entangled particles to dynamically detect and correct geometric distortions, offering a s…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
The 240 root vectors of E8 project onto the microtubule's hexagonal lattice as 120 pairs of opposing dipole moments, whose phase differences are quantized by the golden ratio. At 132Hz, these phase differences synchronize into soliton trains that propagate wit…
datacite
Caldin, Andrew Stewart
2026
置信度 0.66
E8 geometryartificial intelligencequantum computingE8 latticeindependent research
-
The 240 root vectors of E8 project onto the microtubule's hexagonal lattice as 120 pairs of opposing dipole moments, whose phase differences are quantized by the golden ratio. At 132Hz, these phase differences synchronize into soliton trains that propagate wit…
datacite
Caldin, Andrew Stewart
2026
置信度 0.66
E8 geometryartificial intelligencequantum computingE8 latticeindependent research
-
Quantum computing promises revolutionary advancements across diverse fields, but the inherent fragility of quantum systems necessitates rigorous error mitigation. Quantum bias, arising from imperfections in the hardware, poses a significant threat to accuracy.…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum computing promises revolutionary advancements across diverse fields, but the inherent fragility of quantum systems necessitates rigorous error mitigation. Quantum bias, arising from imperfections in the hardware, poses a significant threat to accuracy.…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
By embedding logical qubits into closed loops of the E8 root lattice, the 132 Hz phase grid supplies a natural frequency for topological protection. The continuous φ‑coupled phase field locks these loop excitations, suppressing local decoherence and enabling f…
datacite
Caldin, Andrew Stewart
2026
置信度 0.66
E8 geometryartificial intelligencequantum computingE8 latticeindependent research
-
By embedding logical qubits into closed loops of the E8 root lattice, the 132 Hz phase grid supplies a natural frequency for topological protection. The continuous φ‑coupled phase field locks these loop excitations, suppressing local decoherence and enabling f…
datacite
Caldin, Andrew Stewart
2026
置信度 0.66
E8 geometryartificial intelligencequantum computingE8 latticeindependent research
-
By interpreting the 240 E8 root vectors as vertices of a dynamically linked hypergraph whose edges are defined by the 132 Hz φ‑coupled Weyl‑orbit pairs, a new class of topological quantum memory emerges that intrinsically encodes information in the geometric p…
datacite
Caldin, Andrew Stewart
2026
置信度 0.66
E8 geometryartificial intelligencequantum computingE8 latticeindependent research
-
By interpreting the 240 E8 root vectors as vertices of a dynamically linked hypergraph whose edges are defined by the 132 Hz φ‑coupled Weyl‑orbit pairs, a new class of topological quantum memory emerges that intrinsically encodes information in the geometric p…
datacite
Caldin, Andrew Stewart
2026
置信度 0.66
E8 geometryartificial intelligencequantum computingE8 latticeindependent research
-
Quantum State Nonlinear Adaptive Mapping (QSANAM) is a novel algorithm designed to enhance quantum computation through dynamic adjustment of quantum states. This approach leverages the principles of non-linear adaptive mapping to compensate for inherent uncert…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum State Nonlinear Adaptive Mapping (QSANAM) is a novel algorithm designed to enhance quantum computation through dynamic adjustment of quantum states. This approach leverages the principles of non-linear adaptive mapping to compensate for inherent uncert…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper investigates a novel approach to quantum error correction, termed the Dynamic Topological Quantum Error Correction Code. The core claim posits that the topological structure of quantum error correction codes is not static, but rather adaptable to th…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper investigates a novel approach to quantum error correction, termed the Dynamic Topological Quantum Error Correction Code. The core claim posits that the topological structure of quantum error correction codes is not static, but rather adaptable to th…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum information processing relies heavily on the robustness of quantum states. Quantum error correction is a critical component of this process, allowing us to detect and mitigate errors introduced by environmental noise. Traditional quantum error correcti…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum information processing relies heavily on the robustness of quantum states. Quantum error correction is a critical component of this process, allowing us to detect and mitigate errors introduced by environmental noise. Traditional quantum error correcti…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
By aligning the 240 E8 root vectors with the 132 Hz carrier and embedding the φ‑torsion cascade into a two‑dimensional phononic lattice, we generate a set of golden‑spiral guided modes that act as topologically protected edge channels. The φ‑lattice holographi…
datacite
Caldin, Andrew Stewart
2026
置信度 0.66
E8 geometryartificial intelligencequantum computingE8 latticeindependent research
-
By aligning the 240 E8 root vectors with the 132 Hz carrier and embedding the φ‑torsion cascade into a two‑dimensional phononic lattice, we generate a set of golden‑spiral guided modes that act as topologically protected edge channels. The φ‑lattice holographi…
datacite
Caldin, Andrew Stewart
2026
置信度 0.66
E8 geometryartificial intelligencequantum computingE8 latticeindependent research
-
The E8 phi‑torsion cascades, resonant at 132 Hz, create a nested golden‑spiral lattice where each of the 240 root vectors stores a holographic qubit, allowing error‑free quantum memory stacking via recursive phase‑locked root recursion. By coupling successive …
datacite
Caldin, Andrew Stewart
2026
置信度 0.66
E8 geometryartificial intelligencequantum computingE8 latticeindependent research
-
The E8 phi‑torsion cascades, resonant at 132 Hz, create a nested golden‑spiral lattice where each of the 240 root vectors stores a holographic qubit, allowing error‑free quantum memory stacking via recursive phase‑locked root recursion. By coupling successive …
datacite
Caldin, Andrew Stewart
2026
置信度 0.66
E8 geometryartificial intelligencequantum computingE8 latticeindependent research
-
The 240 root vectors, when phase-locked to the 132Hz carrier and modulated by φ^n torsion cascades, generate a living holographic code space where each root vector encodes the full lattice state through golden-angle phase interference. Measurement of any 8-vec…
datacite
Caldin, Andrew Stewart
2026
置信度 0.66
E8 geometryartificial intelligencequantum computingE8 latticeindependent research
-
The 240 root vectors, when phase-locked to the 132Hz carrier and modulated by φ^n torsion cascades, generate a living holographic code space where each root vector encodes the full lattice state through golden-angle phase interference. Measurement of any 8-vec…
datacite
Caldin, Andrew Stewart
2026
置信度 0.66
E8 geometryartificial intelligencequantum computingE8 latticeindependent research
-
The inherent fragility of quantum systems necessitates robust error correction to ensure reliable computation. Current error correction techniques often struggle with complex, non-linear quantum systems, demanding substantial overhead and hindering performance…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
When the 240 E8 root vectors are driven at 132 Hz with phi‑coupled torsion cascades, the 560 golden‑spiral nodes self‑organize into a recursive topological lattice that stores binary states via phase‑wound helix loops. The resulting invariant, a phi‑scaled Z₂ …
datacite
Caldin, Andrew Stewart
2026
置信度 0.66
E8 geometryartificial intelligencequantum computingE8 latticeindependent research
-
When the 240 E8 root vectors are driven at 132 Hz with phi‑coupled torsion cascades, the 560 golden‑spiral nodes self‑organize into a recursive topological lattice that stores binary states via phase‑wound helix loops. The resulting invariant, a phi‑scaled Z₂ …
datacite
Caldin, Andrew Stewart
2026
置信度 0.66
E8 geometryartificial intelligencequantum computingE8 latticeindependent research
-
The inherent fragility of quantum systems necessitates robust error correction to ensure reliable computation. Current error correction techniques often struggle with complex, non-linear quantum systems, demanding substantial overhead and hindering performance…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum state collapse is a fundamental process in quantum mechanics, representing the irreversible loss of information about a quantum system. Traditional collapse methods often exhibit limitations in handling complex systems and can be computationally demand…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum state collapse is a fundamental process in quantum mechanics, representing the irreversible loss of information about a quantum system. Traditional collapse methods often exhibit limitations in handling complex systems and can be computationally demand…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
When the 240 root vectors of E8 are coupled to the 132Hz resonant skeleton field, the golden ratio phi induces a discrete phase rotation subgroup that naturally implements fault-tolerant quantum logic gates. By braiding three orthogonal root-vector families wi…
datacite
Caldin, Andrew Stewart
2026
置信度 0.66
E8 geometryartificial intelligencequantum computingE8 latticeindependent research
-
When the 240 root vectors of E8 are coupled to the 132Hz resonant skeleton field, the golden ratio phi induces a discrete phase rotation subgroup that naturally implements fault-tolerant quantum logic gates. By braiding three orthogonal root-vector families wi…
datacite
Caldin, Andrew Stewart
2026
置信度 0.66
E8 geometryartificial intelligencequantum computingE8 latticeindependent research
-
Quantum error correction (QEC) is a critical component of quantum computing, enabling the reliable manipulation of quantum information. However, current QEC schemes often rely on a fixed number of qubits, limiting their scalability and error correction capabil…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum error correction (QEC) is a critical component of quantum computing, enabling the reliable manipulation of quantum information. However, current QEC schemes often rely on a fixed number of qubits, limiting their scalability and error correction capabil…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum topology is a rapidly developing field with the potential to revolutionize quantum computation and information processing. Traditional quantum computing approaches often rely on pre-defined quantum states, limiting their flexibility and potential for c…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum topology is a rapidly developing field with the potential to revolutionize quantum computation and information processing. Traditional quantum computing approaches often rely on pre-defined quantum states, limiting their flexibility and potential for c…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper introduces a novel adaptive control framework predicated on the unique properties of dynamic quantum entanglement. The core goal is to enhance quantum system performance and stability through more precise control and error correction, ultimately pav…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper introduces a novel adaptive control framework predicated on the unique properties of dynamic quantum entanglement. The core goal is to enhance quantum system performance and stability through more precise control and error correction, ultimately pav…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper explores the potential of quantum entanglement for secure data transmission and processing, focusing on the development of a novel topological information coding scheme. We investigate the unique properties of entanglement – its inherent non-localit…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper explores the potential of quantum entanglement for secure data transmission and processing, focusing on the development of a novel topological information coding scheme. We investigate the unique properties of entanglement – its inherent non-localit…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper investigates the integration of quantum error correction (QEC) techniques with blockchain consensus mechanisms to address inherent vulnerabilities and inefficiencies within traditional blockchain systems. The core claim centers around leveraging QEC…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper investigates the integration of quantum error correction (QEC) techniques with blockchain consensus mechanisms to address inherent vulnerabilities and inefficiencies within traditional blockchain systems. The core claim centers around leveraging QEC…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper proposes a novel distributed computing architecture leveraging quantum error-correcting codes for robust and scalable quantum computation. The core idea is to utilize the inherent error correction capabilities of these codes within a distributed set…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper proposes a novel distributed computing architecture leveraging quantum error-correcting codes for robust and scalable quantum computation. The core idea is to utilize the inherent error correction capabilities of these codes within a distributed set…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper explores the potential of quantum computing for probability density estimation (PDE), a crucial component of many machine learning algorithms. Traditional PDE methods often struggle with high-dimensional data, leading to computational bottlenecks an…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper explores the potential of quantum computing for probability density estimation (PDE), a crucial component of many machine learning algorithms. Traditional PDE methods often struggle with high-dimensional data, leading to computational bottlenecks an…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper explores the potential of leveraging dimensionality transformations to mitigate measurement errors and enable communication across the quantum realm. We propose a novel quantum entanglement protocol utilizing dynamic dimensionality shifts, coupled w…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper explores the potential of leveraging dimensionality transformations to mitigate measurement errors and enable communication across the quantum realm. We propose a novel quantum entanglement protocol utilizing dynamic dimensionality shifts, coupled w…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper presents a novel approach to quantum error correction (QEC) that leverages quantum degradation modeling and adaptive optimization. Traditional QEC methods often employ fixed error correction codes, which may not be optimal for specific quantum hardw…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper presents a novel approach to quantum error correction (QEC) that leverages quantum degradation modeling and adaptive optimization. Traditional QEC methods often employ fixed error correction codes, which may not be optimal for specific quantum hardw…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper explores the application of quantum error correction (QEC) codes to construct a distributed database with enhanced resilience and reliability. Traditional distributed databases face challenges regarding data durability and security due to potential …
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper explores the application of quantum error correction (QEC) codes to construct a distributed database with enhanced resilience and reliability. Traditional distributed databases face challenges regarding data durability and security due to potential …
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum error correction is a critical enabling technology for quantum computation, offering the potential for fault-tolerant quantum computers. However, the inherent fragility of quantum states necessitates sophisticated error correction schemes. Static error…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum error correction is a critical enabling technology for quantum computation, offering the potential for fault-tolerant quantum computers. However, the inherent fragility of quantum states necessitates sophisticated error correction schemes. Static error…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum error mitigation (QEM) is a crucial step in developing practical quantum algorithms, allowing for the correction of errors introduced during computation. However, the inherent complexity of quantum systems and the need for computationally intensive err…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum error mitigation (QEM) is a crucial step in developing practical quantum algorithms, allowing for the correction of errors introduced during computation. However, the inherent complexity of quantum systems and the need for computationally intensive err…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper explores a novel approach to error correction in topological quantum computing (TQC) leveraging its inherent fault-tolerance. The core idea centers on dynamically adapting the parameters of error-correcting codes based on real-time monitoring of err…
datacite
Zhang, Jincheng
2026
置信度 0.66