TY - JOUR
T1 - Phase modulated high density collinear holographic data storage system with phase-retrieval reference beam locking and orthogonal reference encoding
AU - Liu, Jinpeng
AU - Horimai, Hideyoshi
AU - Lin, Xiao
AU - Huang, Yong
AU - Tan, Xiaodi
N1 - Publisher Copyright:
© 2018 Optical Society of America.
PY - 2018/2/19
Y1 - 2018/2/19
N2 - Abstract: A novel phase modulation method for holographic data storage with phase-retrieval reference beam locking is proposed and incorporated into an amplitude-encoding collinear holographic storage system. Unlike the conventional phase retrieval method, the proposed method locks the data page and the corresponding phase-retrieval interference beam together at the same location with a sequential recording process, which eliminates piezoelectric elements, phase shift arrays and extra interference beams, making the system more compact and phase retrieval easier. To evaluate our proposed phase modulation method, we recorded and then recovered data pages with multilevel phase modulation using two spatial light modulators experimentally. For 4-level, 8-level, and 16-level phase modulation, we achieved the bit error rate (BER) of 0.3%, 1.5% and 6.6% respectively. To further improve data storage density, an orthogonal reference encoding multiplexing method at the same position of medium is also proposed and validated experimentally. We increased the code rate of pure 3/16 amplitude encoding method from 0.5 up to 1.0 and 1.5 using 4-level and 8-level phase modulation respectively.
AB - Abstract: A novel phase modulation method for holographic data storage with phase-retrieval reference beam locking is proposed and incorporated into an amplitude-encoding collinear holographic storage system. Unlike the conventional phase retrieval method, the proposed method locks the data page and the corresponding phase-retrieval interference beam together at the same location with a sequential recording process, which eliminates piezoelectric elements, phase shift arrays and extra interference beams, making the system more compact and phase retrieval easier. To evaluate our proposed phase modulation method, we recorded and then recovered data pages with multilevel phase modulation using two spatial light modulators experimentally. For 4-level, 8-level, and 16-level phase modulation, we achieved the bit error rate (BER) of 0.3%, 1.5% and 6.6% respectively. To further improve data storage density, an orthogonal reference encoding multiplexing method at the same position of medium is also proposed and validated experimentally. We increased the code rate of pure 3/16 amplitude encoding method from 0.5 up to 1.0 and 1.5 using 4-level and 8-level phase modulation respectively.
UR - http://www.scopus.com/inward/record.url?scp=85042084849&partnerID=8YFLogxK
U2 - 10.1364/OE.26.003828
DO - 10.1364/OE.26.003828
M3 - Article
C2 - 29475361
AN - SCOPUS:85042084849
SN - 1094-4087
VL - 26
SP - 3828
EP - 3838
JO - Optics Express
JF - Optics Express
IS - 4
ER -