Bo E. Miller
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View article: Cavity enhanced eigenmode multiplexing for volume holographic data storage
Cavity enhanced eigenmode multiplexing for volume holographic data storage Open
Previously, we proposed and experimentally demonstrated enhanced recording speeds by using a resonant optical cavity to semi-passively increase the reference beam power while recording image bearing holograms. In addition to enhancing the …
View article: Cavity-enhanced eigenmode and angular hybrid multiplexing in holographic data storage systems
Cavity-enhanced eigenmode and angular hybrid multiplexing in holographic data storage systems Open
Resonant optical cavities have been demonstrated to improve energy efficiencies in Holographic Data Storage Systems (HDSS). The orthogonal reference beams supported as cavity eigenmodes can provide another multiplexing degree of freedom to…
View article: Cavity enhanced image recording for holographic data storage
Cavity enhanced image recording for holographic data storage Open
Previously, we proposed and experimentally demonstrated that optical cavities can be employed in recording and readout of plane wave holograms to improve data rates in Holographic Data Storage Systems (HDSS). However, there were some conce…
View article: Cavity techniques for holographic data storage recording
Cavity techniques for holographic data storage recording Open
Conventionally, reading and writing of data holograms utilizes a fraction of the light power because of a trade off in write and read efficiencies. This system constraint can be mitigated by applying a resonator cavity. Cavities enable mor…