Quantum spatial modulation of optical channels: Quantum boosting in spectral efficiency

Title Quantum spatial modulation of optical channels: Quantum boosting in spectral efficiency
Author Gülbahar, Burhan, Memisoglu, G.
Publication Date: 2019-11
Publication Place - IEEE
Subject Optical diffraction, Diffraction, GSM, Quantum computing, Optical modulation, Boosting, Quantum spatial modulation, Optical communications, Multi-plane diffraction, Spectral efficiency
Type Periodical
Language English
Digital Yes
Manuscript No
Library: Özyeğin University
Library Asset ID 1089-7798
Record ID 571221fe-7748-4877-b628-eff40ab9cf2b
Library Location Electrical & Electronics Engineering
Date 2019-11
Sample Text Spatial modulation (SM) improves spectral efficiency (SE) by creating the constellation of active optical antenna indices. However, quantum properties of light are not exploited to improve the SE. In this letter, multi-plane diffraction (MPD) set-up creating exponentially increasing number of propagation paths for classical sources is exploited to introduce quantum spatial modulation (QSM). Exponential number of paths and quantum superposition-based classical symbol generation for transmitting simultaneous multiple classical symbols are exploited for linear and exponential quantum boosting of SM, respectively. It is theoretically modeled, numerically analyzed, and the challenges of joint design of source-channel coding and QSM are discussed.
DOI 10.1109/LCOMM.2019.2932671
Cilt 23
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Quantum spatial modulation of optical channels: Quantum boosting in spectral efficiency

Author Gülbahar, Burhan, Memisoglu, G.
Publication Date 2019-11
Publication Place - IEEE
Subject Optical diffraction, Diffraction, GSM, Quantum computing, Optical modulation, Boosting, Quantum spatial modulation, Optical communications, Multi-plane diffraction, Spectral efficiency
Type Periodical
Language English
Digital Yes
Manuscript No
Library Özyeğin University
Library Asset ID 1089-7798
Record ID 571221fe-7748-4877-b628-eff40ab9cf2b
Library Location Electrical & Electronics Engineering
Date 2019-11
Sample Text Spatial modulation (SM) improves spectral efficiency (SE) by creating the constellation of active optical antenna indices. However, quantum properties of light are not exploited to improve the SE. In this letter, multi-plane diffraction (MPD) set-up creating exponentially increasing number of propagation paths for classical sources is exploited to introduce quantum spatial modulation (QSM). Exponential number of paths and quantum superposition-based classical symbol generation for transmitting simultaneous multiple classical symbols are exploited for linear and exponential quantum boosting of SM, respectively. It is theoretically modeled, numerically analyzed, and the challenges of joint design of source-channel coding and QSM are discussed.
DOI 10.1109/LCOMM.2019.2932671
Cilt 23
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