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Hummel, Thomas (author), Widhalm, Alex (author), Höpker, Jan Philipp (author), Jöns, Klaus D. (author), Chang, J. (author), Fognini, Andreas (author), Steinhauer, Stephan (author), Zwiller, Val (author), Zrenner, Artur (author), Bartley, Tim J. (author)
Superconducting nanowire single-photon detectors (SNSPDs) show near unity efficiency, low dark count rate, and short recovery time. Combining these characteristics with temporal control of SNSPDs broadens their applications as in active de-latching for higher dynamic range counting or temporal filtering for pump-probe spectroscopy or LiDAR....
journal article 2023
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Xia, Fei (author), Gevers, Monique (author), Fognini, Andreas (author), Mok, Aaron T. (author), Li, Bo (author), Akabri, Najva (author), Esmaeil Zadeh, I.Z. (author), Qin-Dregely, Y. (author), Xu, Chris (author)
Using short-wave infrared wavelength advantages, we demonstrate one-photon fluorescence confocal microscopy of adult mouse brains with penetration depths up to 1.7mm. This is achieved by labeling quantum dots with 1300 nm excitation and 1700 nm emission and detecting them with a single-photon superconducting nanowire detector.
conference paper 2022
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Xia, Fei (author), Gevers, Monique (author), Fognini, Andreas (author), Mok, Aaron T. (author), Li, Bo (author), Akbari, Najva (author), Esmaeil Zadeh, I.Z. (author), Qin-Dregely, Y. (author), Xu, Chris (author)
Optical microscopy is a valuable tool for in vivo monitoring of biological structures and functions because of its noninvasiveness. However, imaging deep into biological tissues is challenging due to the scattering and absorption of light. Previous research has shown that the two optimal wavelength windows for high-resolution deep mouse brain...
journal article 2021
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Chang, J. (author), Esmaeil Zadeh, I.Z. (author), Los, Johannes W.N. (author), Zichi, Julien (author), Fognini, Andreas (author), Gevers, Monique (author), Dorenbos, Sander (author), Pereira, S.F. (author), Urbach, Paul (author), Zwiller, Val (author)
In the past decade, superconducting nanowire single-photon detectors (SNSPDs) have gradually become an indispensable part of any demanding quantum optics experiment. Until now, most SNSPDs have been coupled to single-mode fibers. SNSPDs coupled to multimode fibers have shown promising efficiencies but have yet to achieve high time resolution....
journal article 2019
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Gort, R. (author), Bühlmann, K. (author), Däster, S. (author), Salvatella, G. (author), Hartmann, N. (author), Zemp, Y. (author), Holenstein, S. (author), Stieger, C. (author), Fognini, A.W. (author), Michlmayr, T. U. (author), Bähler, T. (author), Vaterlaus, A. (author), Acremann, Y. (author)
Prior to the development of pulsed lasers, one assigned a single local temperature to the lattice, the electron gas, and the spins. With the availability of ultrafast laser sources, one can now drive the temperature of these reservoirs out of equilibrium. Thus, the solid shows new internal degrees of freedom characterized by individual...
journal article 2018
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Bühlmann, Kevin (author), Gort, Rafael (author), Salvatella, Gerard (author), Däster, Simon (author), Fognini, A.W. (author), Bähler, Thomas (author), Dornes, Christian (author), Vaz, C. A.F. (author), Vaterlaus, Andreas (author), Acremann, Yves (author)
The laser-driven ultrafast demagnetization effect is one of the long-standing problems in solid-state physics. The time scale is given not only by the transfer of energy, but also by the transport of angular momentum away from the spin system. Through a double-pulse experiment resembling two-dimensional spectroscopy, we separate the different...
journal article 2018
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Fognini, A.W. (author), Ahmadi, A. (author), Daley, S. J. (author), Reimer, M.E. (author), Zwiller, V.G. (author)
We analyze the degree of entanglement measurable from a quantum dot via the biexciton-exciton cascade as a function of the exciton fine-structure splitting and the detection time resolution. We show that the time-energy uncertainty relation provides means to measure a high entanglement even in presence of a finite fine-structure splitting...
journal article 2018
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Elshaari, A.W.A. (author), Esmaeil Zadeh, I.Z. (author), Fognini, A.W. (author), Reimer, Michael E. (author), Dalacu, Dan (author), Poole, Philip J. (author), Zwiller, V.G. (author), Jöns, Klaus D. (author)
Quantum light plays a pivotal role in modern science and future photonic applications. Since the advent of integrated quantum nanophotonics different material platforms based on III-V nanostructures-, colour centers-, and nonlinear waveguides as on-chip light sources have been investigated. Each platform has unique advantages and limitations;...
journal article 2017
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Fognini, A.W. (author), Michlmayr, T. U. (author), Vaterlaus, A. (author), Acremann, Y. (author)
The ultrafast demagnetization process allows for the generation of femtosecond spin current pulses. Here, we present a thermodynamic model of the spin current generation process, based on the chemical potential gradients as the driving force for the spin current. We demonstrate that the laser-induced spin current can be estimated by an easy...
journal article 2017
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Reimer, M.E. (author), Bulgarini, G. (author), Fognini, A.W. (author), Heeres, R.W. (author), Witek, B.J. (author), Versteegh, M.A.M. (author), Rubino, A. (author), Braun, T. (author), Kamp, M. (author), Höfling, S. (author), Dalacu, D (author), Lapointe, J (author), Poole, Philip J. (author), Zwiller, V.G. (author)
One of the key challenges in developing quantum networks is to generate single photons with high brightness, purity, and long temporal coherence. Semiconductor quantum dots potentially satisfy these requirements; however, due to imperfections in the surrounding material, the coherence generally degrades with increasing excitation power...
journal article 2016
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Esmaeil Zadeh, I.Z. (author), Elshaari, A.W.A. (author), Jöns, K.D. (author), Fognini, A.W. (author), Dalacu, Dan (author), Poole, Philip J. (author), Reimer, Michael E. (author), Zwiller, V.G. (author)
A major step toward fully integrated quantum optics is the deterministic incorporation of high quality single photon sources in on-chip optical circuits. We show a novel hybrid approach in which preselected III-V single quantum dots in nanowires are transferred and integrated in silicon based photonic circuits. The quantum emitters maintain...
journal article 2016
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