Mukherjee Rohit, Hazra Rohit, Borgohain Nitu
Theoretical Photonics Group, Department of Physics, Sarala Birla University, Ranchi, 835103, India.
Department of Humanities and Sciences (H & S), Malla Reddy Engineering College for Women, Secunderabad, 500100, India.
Sci Rep. 2024 Apr 8;14(1):8197. doi: 10.1038/s41598-024-58818-w.
This article presents a coherent phenomenon called spontaneously generated coherence (SGC) under the regime of electromagnetically induced transparency (EIT) in a three-coupled multiple quantum wells. We demonstrate that the presence of SGC in these quantum wells lead to intriguing modifications in the transparency window within the absorption spectrum. At the same time, modification of the dispersive nature is also demonstrated which enables the feasibility of the system in diverse applications based on light propagation. The absorption and dispersion responses are found to be varied by the individual strength of the first and second control fields in presence as well as in absence of SGC in the EIT regime. The positional shifting of the transparency window and simultaneous modifications in the dispersive profiles by tuning the control field detunings of both the first and second control fields are also revealed. Some absorption and dispersion contours are illustrated for getting better insights into the modifications of the optical responses via SGC. Finally, by manipulating the strength of the SGC parameter, we observe the changes in the respective position of the transparency window and dispersion curve. It is expected that the current investigations will pave novel ways for innovative applications in quantum communications, and fabrication of advanced photonic devices.
本文介绍了一种在三耦合多量子阱中电磁诱导透明(EIT)机制下的相干现象,称为自发产生相干(SGC)。我们证明,这些量子阱中SGC的存在会导致吸收光谱中透明窗口出现有趣的变化。同时,还展示了色散特性的改变,这使得该系统在基于光传播的各种应用中具有可行性。发现在EIT机制下,无论有无SGC,吸收和色散响应都会因第一和第二控制场的各自强度而变化。还揭示了通过调整第一和第二控制场的控制场失谐,透明窗口的位置移动以及色散轮廓的同时变化。为了更好地理解通过SGC对光学响应的改变,给出了一些吸收和色散轮廓。最后,通过操纵SGC参数的强度,我们观察到透明窗口和色散曲线各自位置的变化。预计当前的研究将为量子通信中的创新应用以及先进光子器件的制造开辟新途径。