2007
DOI: 10.1109/lpt.2006.890040
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Ultrahigh Birefringent Photonic Crystal Fiber With Ultralow Confinement Loss

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Cited by 130 publications
(65 citation statements)
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“…Compared to the recent results of other approaches to achieve high birefringence and low loss PCFs, such as by adding many elliptical air holes in fiber core [6], by squeezed hexagonal lattice [4], by super-lattice structure PCFs [11], by decreasing stress factor [12], our proposed case A structure possesses both higher birefringence and lower loss in a broad range of wavelengths, and has the merit of ease procedures (all the same size of air holes) of fabrication. Due to the performance of case A structure is superior to those of case B-C, now we focus on the structure of case A with different parameters of Λ x and Λ y to explore high birefringence and low confinement loss of PCF.…”
Section: Simulation Models Method Results and Discussionmentioning
confidence: 92%
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“…Compared to the recent results of other approaches to achieve high birefringence and low loss PCFs, such as by adding many elliptical air holes in fiber core [6], by squeezed hexagonal lattice [4], by super-lattice structure PCFs [11], by decreasing stress factor [12], our proposed case A structure possesses both higher birefringence and lower loss in a broad range of wavelengths, and has the merit of ease procedures (all the same size of air holes) of fabrication. Due to the performance of case A structure is superior to those of case B-C, now we focus on the structure of case A with different parameters of Λ x and Λ y to explore high birefringence and low confinement loss of PCF.…”
Section: Simulation Models Method Results and Discussionmentioning
confidence: 92%
“…One effective way is to replace circular air holes in the cladding with elliptical ones [3]. For the PCFs of this category, high birefringence is achieved when the bulk of the mode energy is in the fiber cladding; thus, the high birefringence is often accompanied with poor energy confinement [4][5][6]. Based on our previous works [7], in this paper, we numerically investigate a novel high-birefringence and low confinement loss index-guiding PCF using the finite element method (FEM).…”
Section: Introductionmentioning
confidence: 99%
“…Over the last two decades, photonic crystal fibers (PCFs) have been intensively studied to overcome the limitation of conventional step index optical fibers due to the design flexibility for the fiber cross section [5][6][7][8]. Various PCF designs have been explored to achieve an ultra-broadband single mode operation [9, 10], unique dispersion properties [11][12][13], high nonlinearity [14] and high birefringence [15][16][17]. Since the refractive index contrast between the core and the cladding in PCF is higher than that of conventional optical fiber, high birefringence can be easily realized in PCFs.…”
Section: Introductionmentioning
confidence: 99%
“…However, much of the optical switches are still predominantly performed electrically in recent applications. With the emergence and development of the microstructure fiber (MSF) which has shown a great success to achieve unique properties such as high birefringence [28][29][30][31][32][33][34][35][36], flattened dispersion [37][38][39][40], large negative dispersion [41,42], high nonlinearity [43,44], endless single mode [45] and so on, there emerges a new opportunity for the exploration of optical switching technology that it is possible to make the optical fiber be an optical switch. Recently, a type of nanomechanical optical fiber [46] has been proposed and demonstrated, which has two fiber cores independently suspended within the fiber.…”
Section: Introductionmentioning
confidence: 99%