Publication | Open Access
Effect of aperiodicity on the broadband reflection of silicon nanorod structures for photovoltaics
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Citations
21
References
2011
Year
PlasmonicsElectrical EngineeringEngineeringPhysicsSystematic Numerical StudyOptical PropertiesNanotechnologyApplied PhysicsSilicon Nanorod StructuresNanofabricationNanorod DiameterOptimal PeriodicSilicon On InsulatorPlasmon-enhanced PhotovoltaicsNanometrologyPhotovoltaicsBroadband Reflection
We carry out a systematic numerical study of the effects of aperiodicity on silicon nanorod anti-reflection structures. We use the scattering matrix method to calculate the average reflection loss over the solar spectrum for periodic and aperiodic arrangements of nanorods. We find that aperiodicity can either improve or deteriorate the anti-reflection performance, depending on the nanorod diameter. We use a guided random-walk algorithm to design optimal aperiodic structures that exhibit lower reflection loss than both optimal periodic and random aperiodic structures.
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