TY - JOUR
T1 - Quantum digital image processing algorithms based onquantum measurement
AU - Yuan, Suzhen
AU - Mao, Xia
AU - Chen, Lijiang
AU - Xue, Yuli
PY - 2013/12
Y1 - 2013/12
N2 - In this paper, quantum digital image processing algorithms based on quantum measurement are pro-posed, which consist of quantum image edge detection algorithm and quantum adaptive median filteringalgorithm. These algorithms follow the quantum signal algorithm framework: First, the pixel of inputimage is transformed into qubit state representation. In this process, a pixel is transformed into sin-gle qubit state representation in quantum image edge detection algorithm, while in quantum adaptivemedian filtering algorithm a pixel is transformed into dual qubits state representation. Dual qubits statehas four basis vectors, which can reflect more information of the represented pixel. Thus the representedpixel can be manipulated more accurately. Second, the quantum measurement outcomes are obtainedbased on quantum measurement postulate. Third, the quantum measurement outcomes are transformedinto the algorithm outcomes. In the final part, experiments are performed to compare our method withconventional methods.
AB - In this paper, quantum digital image processing algorithms based on quantum measurement are pro-posed, which consist of quantum image edge detection algorithm and quantum adaptive median filteringalgorithm. These algorithms follow the quantum signal algorithm framework: First, the pixel of inputimage is transformed into qubit state representation. In this process, a pixel is transformed into sin-gle qubit state representation in quantum image edge detection algorithm, while in quantum adaptivemedian filtering algorithm a pixel is transformed into dual qubits state representation. Dual qubits statehas four basis vectors, which can reflect more information of the represented pixel. Thus the representedpixel can be manipulated more accurately. Second, the quantum measurement outcomes are obtainedbased on quantum measurement postulate. Third, the quantum measurement outcomes are transformedinto the algorithm outcomes. In the final part, experiments are performed to compare our method withconventional methods.
KW - Quantum adaptive median filtering
KW - Quantum edge detection
KW - Quantum measurement measurement
KW - Qubit
UR - https://www.scopus.com/pages/publications/84885177181
U2 - 10.1016/j.ijleo.2013.05.063
DO - 10.1016/j.ijleo.2013.05.063
M3 - 文章
AN - SCOPUS:84885177181
SN - 0030-4026
VL - 124
SP - 6386
EP - 6390
JO - Optik
JF - Optik
IS - 23
ER -