In the vertebrate eye light must be funnelled through a mangled mass of scattering tissue by Muller cells [1]. In distinction to conventional waveguides, that are essentially tubular, these cells have a double-funnel shape, and can efficiently focus, collect, transfer, and outcouple light without the strong mode selectivity of waveguides. Here we explore the use of biologically inspired funnel index of refraction patterns that mimic retinal Muller cells as versatile volume blueprints for multiple optical functions [2]. Compared to tube-like patterns typical of soliton-based waveguides, funnels are fully three-dimensional structures (illustrated in Fig. 1(LEFT)) that achieve either focusing, guiding, and defocusing: the key ingredient is the changing shape along the propagation direction (say the z axis) that can, depending on circumstances, act as a lens (the cellular 'end-feet'), or as a fiber (the cellular 'body'), thus forming a basic blueprint to multifunctional optics. © 2013 IEEE.

Artificial retinal glial-like waveguides for biomimetic volume optics

S Gentilini;
2013

Abstract

In the vertebrate eye light must be funnelled through a mangled mass of scattering tissue by Muller cells [1]. In distinction to conventional waveguides, that are essentially tubular, these cells have a double-funnel shape, and can efficiently focus, collect, transfer, and outcouple light without the strong mode selectivity of waveguides. Here we explore the use of biologically inspired funnel index of refraction patterns that mimic retinal Muller cells as versatile volume blueprints for multiple optical functions [2]. Compared to tube-like patterns typical of soliton-based waveguides, funnels are fully three-dimensional structures (illustrated in Fig. 1(LEFT)) that achieve either focusing, guiding, and defocusing: the key ingredient is the changing shape along the propagation direction (say the z axis) that can, depending on circumstances, act as a lens (the cellular 'end-feet'), or as a fiber (the cellular 'body'), thus forming a basic blueprint to multifunctional optics. © 2013 IEEE.
2013
Istituto dei Sistemi Complessi - ISC
Inglese
Lasers and Electro-Optics Europe (CLEO EUROPE/IQEC)
Lasers and Electro-Optics Europe (CLEO EUROPE/IQEC), 2013 Conference on and International Quantum Electronics
paper_CD_8_5
1
978-1-4799-0593-5
http://www.opticsinfobase.org/abstract.cfm?URI=CLEO_Europe-2013-CD_8_5
Sì, ma tipo non specificato
12-16 May 2013
Munich, Germany
New Guiding Phenomena (CD_8).
0
info:eu-repo/semantics/conferenceObject
none
274
04 Contributo in convegno::04.02 Abstract in Atti di convegno
E. DelRe ; A. Pierangelo ; J. Parravicini ; S. Gentilini ; A.J. Agranat
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/227822
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