Multitweezers generation control within a nanoring resonator system
Optical Engineering, 2010•spiedigitallibrary.org
We propose a novel system of dynamic potential well generation and control using light
pulse control within an add/drop optical filter. The multiplexing signals of the dark solition
with bright/Gaussian pulses are controlled, tuned, and amplified within the system. The
optical storage rings are embedded within the add/drop optical filter system, whereas the
generated optical signals can be stored and amplified within the design system. In
application, the storage signals can be configured to be an optical trapping tool, which is …
pulse control within an add/drop optical filter. The multiplexing signals of the dark solition
with bright/Gaussian pulses are controlled, tuned, and amplified within the system. The
optical storage rings are embedded within the add/drop optical filter system, whereas the
generated optical signals can be stored and amplified within the design system. In
application, the storage signals can be configured to be an optical trapping tool, which is …
We propose a novel system of dynamic potential well generation and control using light pulse control within an add/drop optical filter. The multiplexing signals of the dark solition with bright/Gaussian pulses are controlled, tuned, and amplified within the system. The optical storage rings are embedded within the add/drop optical filter system, whereas the generated optical signals can be stored and amplified within the design system. In application, the storage signals can be configured to be an optical trapping tool, which is known as an optical tweezer, where the high field peak or well can be formed. The advantages are that the dynamic well can be stored and the array of wells can be generated for multiple wells applications. The different in time of the first two dynamic wells of is noted.
SPIE Digital Library
以上显示的是最相近的搜索结果。 查看全部搜索结果