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Hyperbolic metamaterial using chiral molecules 被引量:1
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作者 JieXing Zhao JingJing Cheng +3 位作者 YingQi Chu YanXiang Wang fuguo deng Qing Ai 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2020年第6期13-21,共9页
We theoretically investigate the intra-band transitions in Mobius molecules.Due to the weak magnetic response,the relative permittivity is significantly modified by the presence of the medium while the relative permea... We theoretically investigate the intra-band transitions in Mobius molecules.Due to the weak magnetic response,the relative permittivity is significantly modified by the presence of the medium while the relative permeability is not.We show that there is hyperbolic dispersion relation induced by the intra-band transitions because one of the eigen-values of permittivity possesses a different sign from the other two,while all three eigen-values of permeability are positive.We further demonstrate that the bandwidth of negative refraction is 0.165 eV for the H-polarized incident light,which is broader than the ones for inter-band transitions by 3 orders of magnitude.Moreover,the frequency domain has been shifted from ultra-violet to visible domain.Although there is negative refraction for the E-polarized incident light,the bandwidth is much narrower and depends on the incident angle. 展开更多
关键词 negative refraction hyperbolic dispersion Mobius molecules visible light broad bandwidth
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High-capacity quantum secure direct communication with two-photon six-qubit hyperentangled states 被引量:2
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作者 FangZhou Wu GuoJian Yang +4 位作者 HaiBo Wang Jun Xiong Faris Alzahrani Aatef Hobiny fuguo deng 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2017年第12期19-25,共7页
This study proposes the first high-capacity quantum secure direct communication(QSDC) with two-photon six-qubit hyperentangled Bell states in two longitudinal momentum and polarization degrees of freedom(DOFs) of phot... This study proposes the first high-capacity quantum secure direct communication(QSDC) with two-photon six-qubit hyperentangled Bell states in two longitudinal momentum and polarization degrees of freedom(DOFs) of photon pairs, which can be generated using two 0.5 mm-thick type-I β barium borate crystal slabs aligned one behind the other and an eight-hole screen. The secret message can be independently encoded on the photon pairs with 64 unitary operations in all three DOFs. This protocol has a higher capacity than previous QSDC protocols because each photon pair can carry 6 bits of information, not just 2 or 4 bits.Our QSDC protocol decreases the influence of decoherence from environment noise by exploiting the decoy photons to check the security of the transmission of the first photon sequence. Compared with two-way QSDC protocols, our QSDC protocol is immune to an attack by an eavesdropper using Trojan horse attack strategies because it is a one-way quantum communication.The QSDC protocol has good applications in the future quantum communication because of all these features. 展开更多
关键词 quantum secure direct communication high capacity hyperentanglement two-photon six-qubit systems decoy photons
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Self-error-rejecting photonic qubit transmission in polarization-spatial modes with linear optical elements
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作者 YuXiao Jiang PengLiang Guo +4 位作者 ChengYan Gao HaiBo Wang Faris Alzahrani Aatef Hobiny fuguo deng 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2017年第12期12-18,共7页
We present an original self-error-rejecting photonic qubit transmission scheme for both the polarization and spatial states of photon systems transmitted over collective noise channels. In our scheme, we use simple li... We present an original self-error-rejecting photonic qubit transmission scheme for both the polarization and spatial states of photon systems transmitted over collective noise channels. In our scheme, we use simple linear-optical elements, including half-wave plates, 50:50 beam splitters, and polarization beam splitters, to convert spatial-polarization modes into different time bins. By using postselection in different time bins, the success probability of obtaining the uncorrupted states approaches 1/4 for singlephoton transmission, which is not influenced by the coefficients of noisy channels. Our self-error-rejecting transmission scheme can be generalized to hyperentangled n-photon systems and is useful in practical high-capacity quantum communications with photon systems in two degrees of freedom. 展开更多
关键词 photon transmission error correction collective-noise channel spatial-polarization modes quantum communication
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