In this work, we briefly review polymeric and nanoparticle-based multilayer photonic crystals fabricated on flexible substrates. We discuss the possibility to use the transfer matrix method to simulate and analyse the optical properties of the multilayer photonic crystals. We include a simple algorithm of the transfer matrix method in three different programming languages. We give some examples of polymeric and inorganic photonic crystals and we discuss some applications of these structures, such as sensing and light emission control.
Modelling and fabrication of one-dimensional flexible multilayer photonic crystals based on polymers and inorganic materials / Kriegel, I.; Scotognella, F.. - In: OPTICAL MATERIALS. - ISSN 0925-3467. - 123:(2022), pp. 1-5. [10.1016/j.optmat.2021.111859]
Modelling and fabrication of one-dimensional flexible multilayer photonic crystals based on polymers and inorganic materials
Kriegel I.;Scotognella F.
2022
Abstract
In this work, we briefly review polymeric and nanoparticle-based multilayer photonic crystals fabricated on flexible substrates. We discuss the possibility to use the transfer matrix method to simulate and analyse the optical properties of the multilayer photonic crystals. We include a simple algorithm of the transfer matrix method in three different programming languages. We give some examples of polymeric and inorganic photonic crystals and we discuss some applications of these structures, such as sensing and light emission control.| File | Dimensione | Formato | |
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https://hdl.handle.net/11583/2985400
			
		
	
	
	
			      	