旋光法
双折射
光学
极化(电化学)
量子密钥分配
量子光学
光电子学
光子
测距
波导管
物理
计算机科学
电信
化学
物理化学
散射
作者
Giacomo Corrielli,Andrea Crespi,R. Geremia,Roberta Ramponi,Linda Sansoni,Andrea Santinelli,Paolo Mataloni,Fabio Sciarrino,Roberto Osellame
摘要
Integrated photonic technologies applied to quantum optics have recently enabled a wealth of breakthrough experiments in several quantum information areas. Path encoding was initially used to demonstrate operations on single or multiple qubits. However, a polarization encoding approach is often simpler and more effective. Two-qubits integrated logic gates as well as complex interferometric structures have been successfully demonstrated exploiting polarization encoding in femtosecond-laser-written photonic circuits. Still, integrated devices performing single-qubit rotations are missing. Here we demonstrate waveguide-based waveplates, fabricated by femtosecond laser pulses, capable to effectively produce arbitrary single-qubit operations in the polarization encoding. By exploiting these novel components we fabricate and test a compact device for the quantum state tomography of two polarization-entangled photons. The integrated optical waveplates complete the toolbox required for a full manipulation of polarization-encoded qubits on-chip, disclosing new scenarios for integrated quantum computation, sensing and simulation, and possibly finding application also in standard photonic devices.
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