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11篇 您的检索式:作者名="Tanzilli S"
    题名 作者 年代 出处 被引量
1PPLN waveguide for quan- tum communication显示文摘Tanzilli S Tittel W Riedmatten H 2002The European Physical Journal D2002,18,2:1
2Intravenous ascorbic acid infusion improves myocardial perfusion grade during elective percutaneous coronary intervention: relationship with oxidative stress marke~显示文摘Basili S Tanzilli G Mangieri E 2010JACC Cardiovasc Interv2010,3,2:1
3A photonic quantum information interface显示文摘Tanzilli S Tittel W Halder M 2005Nature2005,437,:1
4PPLN waveguide for quantum communication 显示文摘TANZILLI S TITTEL W de RIEDMATTEN H 2002The European Physical Journal D2002,18,2:1
5The relationship between serum ghrelin and body composition with bone mineral density and Qus parameters in subjects with Rett syndrome 显示文摘Caffarelli C Gonnelli S Tanzilli L 2012Bone2012,50,4:1
6Photon-bunching Measurement After two 25-km-long Optical Fibers显示文摘HALDER M TANZILLI S DE RIEDMATTEN H 0,,:1
7Intravenous ascorbic acid infusion improves myocardial perfusion grade during elective percutaneous coronary intervention:relationship with oxidative stress markers显示文摘Basili S Tanzilli G Mangieri E 2010JACC Cardiovasc Interv2010,3,2:1
8A 78-year-old female patient with severe resistant hypertension and chronic kidney disease stage 5 treated by renal denervation显示文摘Morelli S Tanzilli G Farina L 2014Blood Press Monit2014,19,3:1
9The associations of body composition and fat distribution with bone mineral density in el- derly Italian men and women显示文摘Gonnelli S Caffarelli C Tanzilli L 2013J Clin Densitom2013,16,2:1
10Intravenous ascor- bic acid infusion improves myocardial perfusion grade during elective percutaneous coronary intervention:rela- tionship with oxidative stress markers显示文摘Basili S Tanzilli G Mangieri E 2010JACC Cardiovasc Interv2010,3,2:1
11Quantum enhancement of accuracy and precision in optical interferometry显示文摘White-light interferometry is one of today’s most precise tools for determining the properties of optical materials.Its achievable precision and accuracy are typically limited by systematic errors due to a high number of interdependent data-fitting parameters.Here,we introduce spectrally resolved quantum white-light interferometry as a novel tool for optical property measurements,notably,chromatic dispersion in optical fibres.By exploiting both spectral and photon-number correlations of energy-time entangled photon pairs,the number of fitting parameters is significantly reduced,which eliminates systematic errors and leads to an absolute determination of the material parameter.By comparing the quantum method to state-of-the-art approaches,we demonstrate the quantum advantage of 2.4 times better measurement precision,despite requiring 62 times fewer photons.The improved results are due to conceptual advantages enabled by quantum optics,which are likely to define new standards in experimental methods for characterising optical materials.Florian Kaiser Panagiotis Vergyris Djeylan Aktas Charles Babin Laurent Labonté Sébastien Tanzilli 2017Light(Science & Applications)2017,6,1:0
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