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Spectral decomposition of single-tone-driven quantum phase modulation

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Spectral decomposition of single-tone-driven quantum phase modulation

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Capmany Francoy, J.; Fernandez-Pousa, CR. (2011). Spectral decomposition of single-tone-driven quantum phase modulation. Journal of Physics B Atomic Molecular and Optical Physics. 44(3):35506-35506. https://doi.org/10.1088/0953-4075/44/3/035506

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Título: Spectral decomposition of single-tone-driven quantum phase modulation
Autor: Capmany Francoy, José Fernandez-Pousa, Carlos R.
Entidad UPV: Universitat Politècnica de València. Departamento de Comunicaciones - Departament de Comunicacions
Fecha difusión:
Resumen:
[EN] Electro-optic phase modulators driven by a single radio-frequency tone ¿ can be described at the quantum level as scattering devices where input single-mode radiation undergoes energy changes in multiples of h¿. In ...[+]
Palabras clave: Classical fields , Continuous spectrum , Eigenstates , Eigenvalue equations , Eigenvectors , Electrooptic phase modulator , Energy changes , Harmonic oscillators , Multimodes , Optical bands , Phase state , Photon numbers , Quantum levels , Radio frequencies , Scattering operators , Single-mode radiation , Spectral decomposition , Spectral representations , Unit circles , Dielectric losses , Locomotives , Mathematical operators , Multiphoton processes , Oscillators (electronic) , Phase modulation , Photons , Quantum theory , Railroad cars , Eigenvalues and eigenfunctions
Derechos de uso: Cerrado
Fuente:
Journal of Physics B Atomic Molecular and Optical Physics. (issn: 0953-4075 )
DOI: 10.1088/0953-4075/44/3/035506
Editorial:
IOP Publishing
Versión del editor: https://doi.org/10.1088/0953-4075/44/3/035506
Código del Proyecto:
info:eu-repo/grantAgreement/MICINN//TEC2008-02606/ES/CONVERTIDORES ACTIVOS LASER PARA SISTEMAS DE COMUNICACIONES Y FOTONICA DE MICROONDAS./
info:eu-repo/grantAgreement/Generalitat Valenciana//PROMETEO08%2F2008%2F092/ES/Tecnologias y aplicaciones avanzadas y emergentes de la fotonica de microondas (microwave photonics advanced and emergent technologies and applications)/ /
Agradecimientos:
The authors acknowledge support from the Spanish Government through project TEC2008-02606 and project Quantum Optical Information Technology, QOIT, a CONSOLIDER-INGENIO 2010 Project; and also from Generalitat Valenciana ...[+]
Tipo: Artículo

References

Chapuran, T. E., Toliver, P., Peters, N. A., Jackel, J., Goodman, M. S., Runser, R. J., … Dardy, H. (2009). Optical networking for quantum key distribution and quantum communications. New Journal of Physics, 11(10), 105001. doi:10.1088/1367-2630/11/10/105001

Kolchin, P., Belthangady, C., Du, S., Yin, G. Y., & Harris, S. E. (2008). Electro-Optic Modulation of Single Photons. Physical Review Letters, 101(10). doi:10.1103/physrevlett.101.103601

Specht, H. P., Bochmann, J., Mücke, M., Weber, B., Figueroa, E., Moehring, D. L., & Rempe, G. (2009). Phase shaping of single-photon wave packets. Nature Photonics, 3(8), 469-472. doi:10.1038/nphoton.2009.115 [+]
Chapuran, T. E., Toliver, P., Peters, N. A., Jackel, J., Goodman, M. S., Runser, R. J., … Dardy, H. (2009). Optical networking for quantum key distribution and quantum communications. New Journal of Physics, 11(10), 105001. doi:10.1088/1367-2630/11/10/105001

Kolchin, P., Belthangady, C., Du, S., Yin, G. Y., & Harris, S. E. (2008). Electro-Optic Modulation of Single Photons. Physical Review Letters, 101(10). doi:10.1103/physrevlett.101.103601

Specht, H. P., Bochmann, J., Mücke, M., Weber, B., Figueroa, E., Moehring, D. L., & Rempe, G. (2009). Phase shaping of single-photon wave packets. Nature Photonics, 3(8), 469-472. doi:10.1038/nphoton.2009.115

Harris, S. E. (2008). Nonlocal modulation of entangled photons. Physical Review A, 78(2). doi:10.1103/physreva.78.021807

Sensarn, S., Yin, G. Y., & Harris, S. E. (2009). Observation of Nonlocal Modulation with Entangled Photons. Physical Review Letters, 103(16). doi:10.1103/physrevlett.103.163601

Mérolla, J.-M., Mazurenko, Y., Goedgebuer, J.-P., Duraffourg, L., Porte, H., & Rhodes, W. T. (1999). Quantum cryptographic device using single-photon phase modulation. Physical Review A, 60(3), 1899-1905. doi:10.1103/physreva.60.1899

Grosshans, F., Van Assche, G., Wenger, J., Brouri, R., Cerf, N. J., & Grangier, P. (2003). Quantum key distribution using gaussian-modulated coherent states. Nature, 421(6920), 238-241. doi:10.1038/nature01289

Tsang, M., & Psaltis, D. (2006). Propagation of temporal entanglement. Physical Review A, 73(1). doi:10.1103/physreva.73.013822

Tsang, M., Shapiro, J. H., & Lloyd, S. (2008). Quantum theory of optical temporal phase and instantaneous frequency. Physical Review A, 78(5). doi:10.1103/physreva.78.053820

Tsang, M., Shapiro, J. H., & Lloyd, S. (2009). Quantum theory of optical temporal phase and instantaneous frequency. II. Continuous-time limit and state-variable approach to phase-locked loop design. Physical Review A, 79(5). doi:10.1103/physreva.79.053843

Bloch, M., McLaughlin, S. W., Merolla, J.-M., & Patois, F. (2007). Frequency-coded quantum key distribution. Optics Letters, 32(3), 301. doi:10.1364/ol.32.000301

Kumar, P., & Prabhakar, A. (2009). Evolution of Quantum States in an Electro-Optic Phase Modulator. IEEE Journal of Quantum Electronics, 45(2), 149-156. doi:10.1109/jqe.2008.2002673

Olislager, L., Cussey, J., Nguyen, A. T., Emplit, P., Massar, S., Merolla, J.-M., & Huy, K. P. (2010). Frequency-bin entangled photons. Physical Review A, 82(1). doi:10.1103/physreva.82.013804

Capmany, J., & Fernández-Pousa, C. R. (2010). Quantum model for electro-optical phase modulation. Journal of the Optical Society of America B, 27(6), A119. doi:10.1364/josab.27.00a119

Susskind, L., & Glogower, J. (1964). Quantum mechanical phase and time operator. Physics Physique Fizika, 1(1), 49-61. doi:10.1103/physicsphysiquefizika.1.49

CARRUTHERS, P., & NIETO, M. M. (1968). Phase and Angle Variables in Quantum Mechanics. Reviews of Modern Physics, 40(2), 411-440. doi:10.1103/revmodphys.40.411

Pegg, D. T., & Barnett, S. M. (1988). Unitary Phase Operator in Quantum Mechanics. Europhysics Letters (EPL), 6(6), 483-487. doi:10.1209/0295-5075/6/6/002

Lynch, R. (1995). The quantum phase problem: a critical review. Physics Reports, 256(6), 367-436. doi:10.1016/0370-1573(94)00095-k

Barnett, S. M., & Vaccaro, J. A. (Eds.). (2007). The Quantum Phase Operator. doi:10.1201/b16006

Blow, K. J., Loudon, R., Phoenix, S. J. D., & Shepherd, T. J. (1990). Continuum fields in quantum optics. Physical Review A, 42(7), 4102-4114. doi:10.1103/physreva.42.4102

D’Ariano, G. M., & Paris, M. G. A. (1993). Necessity of sine-cosine joint measurement. Physical Review A, 48(6), R4039-R4042. doi:10.1103/physreva.48.r4039

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