scholarly journals On-Chip Adiabatic Couplers for Broadband Quantum-Polarization State Preparation

Author(s):  
Hung-Pin Chung ◽  
Kuang-Hsu Huang ◽  
Kai Wang ◽  
Sung-Lin Yang ◽  
Shih-Yuan Yang ◽  
...  
2017 ◽  
Vol 7 (1) ◽  
Author(s):  
Hung-Pin Chung ◽  
Kuang-Hsu Huang ◽  
Kai Wang ◽  
Sung-Lin Yang ◽  
Shih-Yuan Yang ◽  
...  

2016 ◽  
Vol 94 (2) ◽  
Author(s):  
Ömer Bayraktar ◽  
Marcin Swillo ◽  
Carlota Canalias ◽  
Gunnar Björk

Author(s):  
Ru Yang ◽  
Yang Xue ◽  
Yunxia Li ◽  
Lei Shi ◽  
Yu Zhu ◽  
...  

Nanophotonics ◽  
2019 ◽  
Vol 8 (3) ◽  
pp. 467-474 ◽  
Author(s):  
Wenhao Wu ◽  
Yu Yu ◽  
Wei Liu ◽  
Xinliang Zhang

AbstractPolarization measurement has been widely used in material characterization, medical diagnosis and remote sensing. However, existing commercial polarization analyzers are either bulky schemes or operate in non-real time. Recently, various polarization analyzers have been reported using metal metasurface structures, which require elaborate fabrication and additional detection devices. In this paper, a compact and fully integrated silicon polarization analyzer with a photonic crystal-like metastructure for polarization manipulation and four subsequent on-chip photodetectors for light-current conversion is proposed and demonstrated. The input polarization state can be retrieved instantly by calculating four output photocurrents. The proposed polarization analyzer is complementary metal oxide semiconductor-compatible, making it possible for mass production and easy integration with other silicon-based devices monolithically. Experimental verification is also performed for comparison with a commercial polarization analyzer, and deviations of the measured polarization angle are <±1.2%.


Nanomaterials ◽  
2019 ◽  
Vol 9 (2) ◽  
pp. 157 ◽  
Author(s):  
Yin Xu ◽  
Feng Li ◽  
Zhe Kang ◽  
Dongmei Huang ◽  
Xianting Zhang ◽  
...  

Polarization-insensitive modulation, i.e., overcoming the limit of conventional modulators operating under only a single-polarization state, is desirable for high-capacity on-chip optical interconnects. Here, we propose a hybrid graphene-silicon-based polarization-insensitive electro-absorption modulator (EAM) with high-modulation efficiency and ultra-broad bandwidth. The hybrid graphene-silicon waveguide is formed by leveraging multi-deposited and multi-transferred methods to enable light interaction with graphene layers in its intense field distribution region instead of the commonly used weak cladding region, thus resulting in enhanced light–graphene interaction. By optimizing the dimensions of all hybrid graphene-silicon waveguide layers, polarization-insensitive modulation is achieved with a modulation efficiency (ME) of ~1.11 dB/µm for both polarizations (ME discrepancy < 0.006 dB/µm), which outperforms that of previous reports. Based on this excellent modulation performance, we designed a hybrid graphene-silicon-based EAM with a length of only 20 µm. The modulation depth (MD) and insertion loss obtained were higher than 22 dB and lower than 0.23 dB at 1.55 µm, respectively, for both polarizations. Meanwhile, its allowable bandwidth can exceed 300 nm by keeping MD more than 20 dB and MD discrepancy less than 2 dB, simultaneously, and its electrical properties were also analyzed. Therefore, the proposed device can be applied in on-chip optical interconnects.


2008 ◽  
Vol 06 (05) ◽  
pp. 1127-1134 ◽  
Author(s):  
YAN XIA ◽  
JIE SONG ◽  
HE-SHAN SONG ◽  
JIN-LIANG GUO

We present a linear optical protocol for multiparty remote state preparation (MRSP) in terms of optical elements. MRPS is a procedure for multiparty collaboration with each other to remote preparation of a known quantum state to a distant party. We show that it is possible to achieve unity fidelity remote preparation of the polarization state using optical elements. This protocol may be used for converging the split information at one point.


2017 ◽  
Vol 2017 ◽  
pp. 1-7 ◽  
Author(s):  
Linyan Guo ◽  
Ming Deng ◽  
Qisheng Zhang ◽  
Xinyue Zhang ◽  
Zhenzhong Yuan

This paper presents a novel design of compact orthogonally polarized on-chip antenna to realize 300 GHz full-duplex communication system with high isolation. It consists of a dipole antenna for horizontal polarization and a disk-loaded monopole antenna for vertical polarization. They are in good cross-polarization state with more than 90 dB of self-interference suppression and then can be used to achieve good isolation between transmitting and receiving antennas. In addition, two dual-polarized antennas have been adopted in two separated transceivers to study their isolation performance. Furthermore, this compact antenna only occupies an active area of 390 μm × 300 μm × 78 μm and can be used for multiple-input multiple-output application as well.


2019 ◽  
Vol 5 (6) ◽  
pp. eaav7588 ◽  
Author(s):  
Martin Neugebauer ◽  
Peter Banzer ◽  
Sergey Nechayev

Controlling the polarization state and the propagation direction of photons is a fundamental prerequisite for many nanophotonic devices and a precursor for future on-chip communication, where the emission properties of individual emitters are particularly relevant. Here, we report on the emission of partially circularly polarized photons by a linear dipole. The underlying effect is linked to the near-field part of the angular spectrum of the dipole, and it occurs in any type of linear dipole emitter, ranging from atoms and quantum dots to molecules and dipole-like antennas. We experimentally observe it by near-field to far-field transformation at a planar dielectric interface and numerically demonstrate the utility of this phenomenon by coupling the circularly polarized light to the individual paths of crossing waveguides.


Author(s):  
А.В. Хмелев ◽  
А.В. Дуплинский ◽  
В.Ф. Майборода ◽  
Р.М. Бахшалиев ◽  
М.Ю. Баланов ◽  
...  

A ground-based receiving station for quantum key distribution with a satellite, capable of analyzing the quantum polarization states of photons, is demonstrated. In the experiment on tracking a low-Earth orbit satellite, the residual tracking error by the ground station does not exceed 10 μrad, which ensures stable reception of the optical signal in four channels of the polarization state decoder. An estimation of the efficiency of registration of an optical signal in the mode of tracking satellites is carried out.


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