Quantum Digitization of Electromagnetic Field States: A Computational Tool for Investigating Encoding-Dependent Quantum Information Measures

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We present a comprehensive computational tool for investigating the quantum digitization problem: how to represent continuous electromagnetic field states as discrete qubit registers. The encoding of quantum field states into finite qubit systems is a fundamental challenge in quantum information theory, with significant implications for quantum computing, communication, and metrology. We introduce two Mathematica-based analysis functions, QubitInfoPanel[] and QubitInfoPanelGray[], which accept arbitrary density matrices describing quantized electromagnetic fields and compute a comprehensive suite of quantum information measures including entanglement, mutual information, and entropy. These tools enable systematic investigation of how encoding scheme choices (Binary vs Gray code) and measurement basis selections (Fock vs Phase) affect the observed quantum correlations. Our framework provides researchers with a validated platform to explore representation-dependent quantum properties in field quantization schemes. We present a comprehensive computational tool for investigating the quantum digitization problem: how to represent continuous electromagnetic field states as discrete qubit registers. The encoding of quantum field states into finite qubit systems is a fundamental challenge in quantum information theory, with significant implications for quantum computing, communication, and metrology. We introduce two Mathematica-based analysis functions, QubitInfoPanel[] and QubitInfoPanelGray[], which accept arbitrary density matrices describing quantized electromagnetic fields and compute a comprehensive suite of quantum information measures including entanglement, mutual information, and entropy. These tools enable systematic investigation of how encoding scheme choices (Binary vs Gray code) and measurement basis selections (Fock vs Phase) affect the observed quantum correlations. Our framework provides researchers with a validated platform to explore representation-dependent quantum properties in field quantization schemes.
- Cím és alcím
- Quantum Digitization of Electromagnetic Field States: A Computational Tool for Investigating Encoding-Dependent Quantum Information Measures
- A könyvrészlet száma
- 3.
- Szerző
- Németh, István
- Szerkesztő
- Dr. Wührl, Tibor
- Megjelenés ideje
- 2026
- Hozzáférés szintje
- Open access
- Konferencia címe
- Kandó Konferencia 2025
- Konferencia ideje
- 2026
- Nyelv
- en
- Terjedelem
- 21 p.
- Tárgyszó
- quantum digitization, qubit encoding, quantum entanglement measures, electromagnetic field quantization, gray code representation
- Változat
- Kiadói változat
- A cikket/könyvrészletet tartalmazó dokumentum címe
- XLI. Kandó Konferencia 2025 KK2025
- A forrás folyóirat éve
- 2026
- ISBN, e-ISBN
- 978-963-449-398-3
- Műfaj
- Konferenciaközlemény
- Tudományterület
- Természettudományok - fizikai tudományok
- Egyetem
- Óbudai Egyetem
- Kar
- Kandó Kálmán Villamosmérnöki Kar