Lu Jesse, Vučković Jelena
Ginzton Laboratory, Stanford University, Stanford, California, USA.
Opt Express. 2013 Jun 3;21(11):13351-67. doi: 10.1364/OE.21.013351.
In contrast to designing nanophotonic devices by tuning a handful of device parameters, we have developed a computational method which utilizes the full parameter space to design linear nanophotonic devices. We show that our method may indeed be capable of designing any linear nanophotonic device by demonstrating designed structures which are fully three-dimensional and multi-modal, exhibit novel functionality, have very compact footprints, exhibit high efficiency, and are manufacturable. In addition, we also demonstrate the ability to produce structures which are strongly robust to wavelength and temperature shift, as well as fabrication error. Critically, we show that our method does not require the user to be a nanophotonic expert or to perform any manual tuning. Instead, we are able to design devices solely based on the user's desired performance specification for the device.
与通过调整少数几个器件参数来设计纳米光子器件不同,我们开发了一种计算方法,该方法利用完整的参数空间来设计线性纳米光子器件。我们通过展示完全三维且多模态的设计结构、展现新颖功能、具有非常紧凑的尺寸、具备高效率且可制造的设计结构,表明我们的方法确实能够设计任何线性纳米光子器件。此外,我们还展示了生产对波长和温度变化以及制造误差具有强鲁棒性的结构的能力。至关重要的是,我们表明我们的方法不要求用户是纳米光子学专家或进行任何手动调整。相反,我们能够仅根据用户对器件的期望性能规格来设计器件。