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High winding number of topological phase in non-unitary periodic quantum walk 被引量:2
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作者 yali jia Zhi-jian Li 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第10期120-126,共7页
Topological phases and their associated multiple edge states are studied by constructing a one-dimensional non-unitary multi-period quantum walk with parity-time symmetry.It is shown that large topological numbers can... Topological phases and their associated multiple edge states are studied by constructing a one-dimensional non-unitary multi-period quantum walk with parity-time symmetry.It is shown that large topological numbers can be obtained when choosing an appropriate time frame.The maximum value of the winding number can reach the number of periods in the one-step evolution operator.The validity of the bulk-edge correspondence is confirmed,while for an odd-period quantum walk and an even-period quantum walk,they have different configurations of the 0-energy edge state andπ-energy edge state.On the boundary,two kinds of edge states always coexist in equal amount for the odd-period quantum walk,however three cases including equal amount,unequal amount or even only one type may occur for the even-period quantum walk. 展开更多
关键词 periodic quantum walk high winding number edge states
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Optical coherence tomography angiography of non-exudative choroidal neovascularization 被引量:1
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作者 Lee Kiang Steven T.Bailey +1 位作者 yali jia David Huang 《Eye Science》 CAS 2016年第4期243-245,共3页
Age-related macular degeneration(AMD)has been classified in two groups,neovascular and non-neovascular,which historically has been synonymous with exudative and non-exudative,respectively.Neovascular AMD occurs when p... Age-related macular degeneration(AMD)has been classified in two groups,neovascular and non-neovascular,which historically has been synonymous with exudative and non-exudative,respectively.Neovascular AMD occurs when pathologic blood vessels,choroidal 展开更多
关键词 血管造影 新生血管 脉络膜 渗出性 断层扫描 光学相干 年龄相关 AMD
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LABEL-FREE 3D OPTICAL MICROANGIOGRAPHY IMAGING OF FUNCTIONAL VASA NERVORUM AND PERIPHERAL MICROVASCULAR TREE IN THE HIND LIMB OF DIABETIC MICE
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作者 yali jia THOMAS K.BAUMANN RUIKANG K.WANG 《Journal of Innovative Optical Health Sciences》 SCIE EI CAS 2010年第4期307-313,共7页
Diabetic neuropathy(DN)is,at least in part,associated with the functional attenuation of vasa nervorum,the microvascular structure of peripheral nerves.Microvascular imaging options for vasa nervorum still remain limi... Diabetic neuropathy(DN)is,at least in part,associated with the functional attenuation of vasa nervorum,the microvascular structure of peripheral nerves.Microvascular imaging options for vasa nervorum still remain limited.In this work,optical microangiography(OMAG),a volumetric,label-free imaging technique,is utilized for characterizing,with high resolution,blood perfusion of peripheral nerve in diabetic mice.We demonstrate that OMAG is able to visualize the structure of microvasculature and to quantify the changes of dynamic blood flow and vessel diameters during administration of vessel stimulant in both diabetic and normal mice.The results indicate the potential of OMAG to assess the blood supply of nerve involved in the pathology and treatment of DN. 展开更多
关键词 Vasa nervorum MICROCIRCULATION peripheral nerve diabetes optical microangiography
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Quantitative optical coherence tomography angiography of the peripapillary circulation in glaucoma
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作者 Joseph M.Simonett David Huang yali jia 《Annals of Eye Science》 2017年第1期25-27,共3页
The cause of glaucoma,a disease defined by degeneration of retinal ganglion cells associated with cupping of the optic nerve head(ONH)and progressive vision loss,continues to be debated despite numerous advances in op... The cause of glaucoma,a disease defined by degeneration of retinal ganglion cells associated with cupping of the optic nerve head(ONH)and progressive vision loss,continues to be debated despite numerous advances in ophthalmic imaging and diagnostics.Although elevated intraocular pressure is often implicated,many studies,using a variety of imaging techniques including plain fundus photography,fluorescein angiography,laser Doppler flowmetry,and color Doppler ultrasound(1-4),have suggested that insufficiencies of ONH circulation may play a role in glaucoma pathogenesis.While all of these imaging modalities have been informative,each has a set of limitations,including low spatial resolution,invasiveness,restriction to superficial vessels,lack of repeatability,and modality specific artifacts.Optical coherence tomography angiography(OCTA),an imaging technology that can produce high resolution,three-dimensional images of fundus microcirculation,is well suited to overcome many of these limitations(5). 展开更多
关键词 GLAUCOMA ANGIOGRAPHY SUPERFICIAL
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Magnetic and electric Purcell enhancement in a hybrid metal-dielectric nanostructure
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作者 单凌霄 刘旗 +5 位作者 马筠 贾雅利 林海 吕国伟 龚旗煌 古英 《Chinese Optics Letters》 SCIE EI CAS CSCD 2023年第10期125-132,共8页
Hybrid metal-dielectric structures combine the advantages of both metal and dielectric materials,enabling high-confined but low-loss magnetic and electric resonances through deliberate arrangements.However,their poten... Hybrid metal-dielectric structures combine the advantages of both metal and dielectric materials,enabling high-confined but low-loss magnetic and electric resonances through deliberate arrangements.However,their potential for enhancing magnetic emission has yet to be fully explored.Here,we study the magnetic and electric Purcell enhancement supported by a hybrid structure composed of a dielectric nanoring and a silver nanorod.This structure enables low Ohmic loss and highlyconfined field under the mode hybridization of magnetic resonances on a nanoring and electric resonances on a nanorod in the optical communication band.Thus,the 60-fold magnetic Purcell enhancement and 45-fold electric Purcell enhancement can be achieved.Over 90%of the radiation can be transmitted to the far field.For the sufficiently large Purcell enhancement,the position of emitter has a tolerance of several tens of nanometers,which brings convenience to experimental fabrications.Moreover,an array formed by this hybrid nanostructure can further enhance the magnetic Purcell factors.The system provides a feasible option to selectively excite magnetic and electric emission in integrated photonic circuits.It may also facilitate brighter magnetic emission sources and light-emitting metasurfaces with a more straightforward design. 展开更多
关键词 Purcell effect magnetic emission hybrid structures
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