dc.contributor.authorThubthimthong, Borriboon
dc.date.accessioned2010-12-06T00:59:05Z
dc.date.accessioned2017-07-23T08:39:54Z
dc.date.available2010-12-06T00:59:05Z
dc.date.available2017-07-23T08:39:54Z
dc.date.copyright2010en_US
dc.date.issued2010
dc.identifier.citationThubthimthong, B. (2010). Investigation into mechanically-tunable one-dimensional photonic crystal. Master’s thesis, Nanyang Technological University, Singapore.
dc.identifier.urihttp://hdl.handle.net/10356/42449
dc.description.abstractRecent advances in photonic crystals subject focus mostly on optical properties of rigid structures of two-dimensional or three-dimensional photonic crystals (2-D or 3-D PhCs). While many interesting applications, such as waveguide bends, resonant cavity, add-drop filters, etc., are benefited from the PhCs, tuning optical properties of the PhCs is still a challenging issue. All tuning methods yield small alteration of photonic band gaps (PBGs). An exception from those is the mechanical tuning that promises the largest tuning of the PBG. However, the mechanical tunings for 2-D PhCs and 3-D PhCs have only been conceptualized. Surprisingly, mechanical tunability of one-dimensional photonic crystals (1-D PhCs) has not been investigated much although 1-D PhCs also possess interesting PBG effects. Moreover, simplicity of the 1-D PhC structure encourages easier fabrication and characterization. Therefore, an attempt to demonstrate an application of tunable 1-D PhCs is addressed in this work. A mechanically-tunable PBG polarization splitter was proposed. The device utilized the PBG effect at inclined incidence to separate transverse-electric (TE) mode from transverse-magnetic (TM) mode. Silicon and polydimethylsiloxane (PDMS) were chosen for constructing the tunable 1-D PhC for the device. An improved plane wave expansion method and a transfer matrix method were employed to calculate PBGs of the PhC. The matrix method was further employed to design a finite tunable 1-D PhC at Brewster’s angle. Mechanical tuning of the PBG by varying the thickness of PDMS was studied using the method. Transmitted power and polarization degree were calculated.en_US
dc.format.extent199 p.en_US
dc.language.isoenen_US
dc.subjectDRNTU::Engineering::Mechanical engineeringen_US
dc.titleInvestigation into mechanically-tunable one-dimensional photonic crystalen_US
dc.typeThesis
dc.contributor.schoolSchool of Mechanical and Aerospace Engineeringen_US
dc.contributor.supervisorFranck Alexis Chollet
dc.contributor.supervisorLau Gih Keong
dc.contributor.supervisorMurukeshan Vadakke Mathamen_US
dc.description.degreeMASTER OF ENGINEERING (MAE)en_US


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