论文标题

启用具有等离子颜色的光学隐身,数据存储和加密

Enabling optical steganography, data storage, and encryption with plasmonic colors

论文作者

Song, Maowen, Wang, Di, Kudyshev, Zhaxylyk A., Xuan, Yi, Wang, Zhuoxian, Boltasseva, Alexandra, Shalaev, Vladimir M., Kildishev, Alexander V.

论文摘要

利用超薄的跨膜和金属纳米颗粒的等离子色产生,对于广泛的应用,包括颜色显示,数据存储和信息加密,这是一个很大的希望,这是由于其高空间分辨率和机械/化学稳定性。大多数最近演示的系统都会产生静态颜色。但是,更高级的应用程序(例如数据存储)需要快速,灵活的方法来调整等离子颜色,同时使它们充满活力和稳定。在这里,设计和实验证明了反映偏振化等离子色颜色的表面浮雕铝质表面。局部表面等离子体的激发编码事件的离散组合,并将极化光反映成各种颜色。单个存储单元 - 纳米固定单元 - 在其组成纳米反泰的方向上存储一个多位信息。然后,通过使用两个线性极化器检查反射的颜色序列来可靠地检索此信息。所提出的编码方法的广泛色彩可变性和高空间分辨率支持了快速并行读出和加密高密度光学数据的强烈希望。我们的方法还可以使动态万花筒的强大生成没有不利的“串扰”效果。该方法为先进的动态隐身,高密度并行访问光学数据存储和光学信息加密开辟了新的途径。

Plasmonic color generation utilizing ultra-thin metasurfaces as well as metallic nanoparticles hold a great promise for a wide range of applications, including color displays, data storage, and information encryption due to its high spatial resolution and mechanical/chemical stability. Most of the recently demonstrated systems generate static colors; however, more advanced applications such as data storage require fast and flexible means to tune the plasmonic colors, while keeping them vibrant and stable. Here, a surface-relief aluminum metasurface that reflects polarization-tunable plasmonic colors is designed and experimentally demonstrated. Excitation of localized surface plasmons encodes discrete combinations of the incident and reflected polarized light into diverse colors. A single storage unit - a nanopixel - stores a multiple-bit piece of information in the orientation of its constituent nanoantennae. This information is then reliably retrieved by inspecting the reflected color sequence with two linear polarizers. It is the broad color variability and high spatial resolution of the proposed encoding approach that supports a strong promise for rapid parallel read-out and encryption of high-density optical data. Our method also enables the robust generation of dynamic kaleidoscopic images with no detrimental "cross-talk" effect. The approach opens up a new route for advanced dynamic steganography, high-density parallel-access optical data storage, and optical information encryption.

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