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Can I read Second-order Coherence of Microwave Photons Emitted by a Quantum Point Contact on EtoBox?

Second-order Coherence of Microwave Photons Emitted by a Quantum Point Contact by Hassler, Fabian; Otten, Daniel is a scholarly article available to read on EtoBox.

What is Second-order Coherence of Microwave Photons Emitted by a Quantum Point Contact about?

Shot-noise of electrons that are transmitted with probability $T$ through a quantum point contact (biased at a voltage $V_0$) leads to a fluctuating current that in turn emits radiation in the microwave regime. By calculating the Fano factor $F$ for the case where only a single channel contributes to the transport, it has been shown that the radiation produced at finite frequency $\omega_0$ close to $e V_0/\hbar$ and at low temperatures is nonclassical with sub-Poissonian statistics ($F<1$). The origin of this effect is the fermionic nature of the electrons producing the radiation, which reduces the probability of simultaneous emission of two or more photons. However, the Fano factor, being a time-averaged quantity, offers only limited information about the system. Here, we calculate the second-order coherence $g^{(2)}(\tau)$ for this source of radiation. We show that due to the interference of two contributions, two photon processes (leading to bunching) are completely absent at zero temperature for $T=50\,\%$. At low temperatures, we find a competition of the contribution due to Gaussian current-current fluctuations (leading to bunching) with the one due to non-Gaussian fluctuati

Author
Hassler, Fabian; Otten, Daniel
Published
2015
Language
EN