• Laser & Optoelectronics Progress
  • Vol. 58, Issue 23, 2305001 (2021)
Hongju Guo1, Chen Chen1, and Aihong Yang2、*
Author Affiliations
  • 1Department of Information and Intelligent Engineering, Shanghai Publishing and Printing College,Shanghai 200093, China
  • 2College of Electrical Engineering and Automation, Shandong University of Science and Technology,Qingdao , Shandong 266590, China
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    DOI: 10.3788/LOP202158.2305001 Cite this Article Set citation alerts
    Hongju Guo, Chen Chen, Aihong Yang. Voltage Control of Electromagnetically Induced Grating in Asymmetric Double Quantum Dot System[J]. Laser & Optoelectronics Progress, 2021, 58(23): 2305001 Copy Citation Text show less
    References

    [1] Harris S E. Electromagnetically induced transparency[J]. Physics Today, 50, 36-42(1997).

    [2] Fan B X, Ning J H, Xie M et al. Coherent feedback induced transparency[J]. Optics Express, 28, 28243-28251(2020).

    [3] Longdell J J, Fraval E, Sellars M J et al. Stopped light with storage times greater than one second using electromagnetically induced transparency in a solid[J]. Physical Review Letters, 95, 063601(2005).

    [4] Wu Y, Saldana J, Zhu Y F. Large enhancement of four-wave mixing by suppression of photon absorption from electromagnetically induced transparency[J]. Physical Review A, 67, 013811(2003).

    [5] Jing H, Liu X J, Ge M L et al. Correlated quantum memory: manipulating atomic entanglement via electromagnetically induced transparency[J]. Physical Review A, 71, 062336(2005).

    [6] Zhang H F, Yuan J P, Dong S C et al. Observation of an electromagnetically induced grating in cold 85Rb atoms[J]. Applied Sciences, 10, 5740(2020).

    [7] Ling H Y, Li Y Q, Xiao M. Electromagnetically induced grating: homogeneously broadened medium[J]. Physical Review A, 57, 1338(1998).

    [8] Brown A W, Xiao M. All-optical switching and routing based on an electromagnetically induced absorption grating[J]. Optics Letters, 30, 699-701(2005).

    [9] Kumar S, Sen M. Integrable all-optical switch for photonic integrated circuits[J]. Journal of the Optical Society of America B, 38, 611-620(2021).

    [10] Mao J, Wang C, Hong T X et al. Three-nanosecond-equal interval sub-pulse Nd: YAG laser with multi-step active Q-switching[J]. Chinese Optics Letters, 19, 071404(2021).

    [11] Cardoso G C, Tabosa J W R. Electromagnetically induced gratings in a degenerate open two-level system[J]. Physical Review A, 65, 033803(2002).

    [12] Mitsunaga M, Imoto N. Observation of an electromagnetically induced grating in cold sodium atoms[J]. Physical Review A, 59, 4773-4776(1999).

    [13] Bajcsy M, Zibrov A S, Lukin M D. Stationary pulses of light in an atomic medium[J]. Nature, 426, 638-641(2003).

    [14] Peng Y G. Optimal pulse sequence of quantum controlled not-gates via nuclear magnetic resonance realization[J]. Laser & Optoelectronics Progress, 58, 0127002(2021).

    [15] Kohno T, Suzuki S, Shimizu K. Observation of a coherence loss of an atomic wave scattered from the optical potential in a Talbot-Lau atom interferometer[J]. Physical Review A, 76, 053624(2007).

    [16] Talukdar I, Shrestha R, Summy G S. Sub-Fourier characteristics of a δ-kicked-rotor resonance[J]. Physical Review Letters, 105, 054103(2010).

    [17] Rasel E M, Oberthaler M K, Batelaan H et al. Atom wave interferometry with diffraction gratings of light[J]. Physical Review Letters, 75, 2633(1995).

    [18] Yun P, Mejri S, Tricot F et al. Double-modulation CPT cesium compact clock[J]. Journal of Physics: Conference Series, 723, 012012(2016).

    [19] Zhang Y Q, Wu Z K, Belić M R et al. Photonic Floquet topological insulators in atomic ensembles[J]. Laser & Photonics Reviews, 9, 331-338(2015).

    [20] Tan Y D, Xu X, Zhang S L. Precision Measurement and applications of laser interferometry[J]. Chinese Journal of Lasers, 48, 1504001(2021).

    [21] de Carvalho S A, de Araujo L E. Electromagnetically-induced phase grating: a coupled-wave theory analysis[J]. Optics Express, 19, 1936-1944(2011).

    [22] Xie B, Cai X, Xiao Z H. Electromagnetically induced phase grating controlled by spontaneous emission[J]. Optics Communications, 285, 133-135(2012).

    [23] Xiao Z H, Shin S G, Kim K. An electromagnetically induced grating by microwave modulation[J]. Journal of Physics B: Atomic, Molecular and Optical Physics, 43, 161004(2010).

    [24] Dutta B K, Mahapatra P K. Electromagnetically induced grating in a three-level Ξ-type system driven by a strong standing wave pump and weak probe fields[J]. Journal of Physics B: Atomic, Molecular and Optical Physics, 39, 1145-1157(2006).

    [25] de Araujo Luís E E. Electromagnetically induced phase grating[J]. Optics Letters, 35, 977-979(2010).

    [26] Carvalho S A, de Araujo L E E. Electromagnetically induced blazed grating at low light levels[J]. Physical Review A, 83, 053825(2011).

    [27] Wan R G, Kou J, Jiang L et al. Electromagnetically induced grating via enhanced nonlinear modulation by spontaneously generated coherence[J]. Physical Review A, 83, 033824(2011).

    [28] Zhou F X, Qi Y H, Sun H et al. Electromagnetically induced grating in asymmetric quantum wells via Fano interference[J]. Optics Express, 21, 12249-12259(2013).

    [29] Vafafard A, Sahrai M. Tunable double electromagnetically induced grating with an incoherent pump field[J]. Journal of the Optical Society of America B, 37, 244-250(2020).

    [30] Xiao Z H, Zheng L, Lin H Z. Photoinduced diffraction grating in hybrid artificial molecule[J]. Optics Express, 20, 1219-1229(2012).

    [31] Naeimi A A, Darabi E, Mortezapour A et al. Phase-controlled electromagnetically induced symmetric and asymmetric grating in an asymmetric three-coupled quantum well[J]. Applied Optics, 58, 9662-9669(2019).

    [32] Beirne G J, Hermannstädter C, Wang L et al. Quantum light emission of two lateral tunnel-coupled (In, Ga)As/GaAs quantum dots controlled by a tunable static electric field[J]. Physical Review Letters, 96, 137401(2006).

    [33] Jiang Y W, Zhu K D, Wu Z J et al. Electromagnetically induced transparency in quantum dot systems[J]. Journal of Physics B: Atomic, Molecular and Optical Physics, 39, 2621-2632(2006).

    [34] Jiang Y W, Zhu K D. Local field effects on phonon-induced transparency in quantum dots embedded in a semiconductor medium[J]. Applied Physics B, 90, 79-85(2008).

    [35] Yuan C H, Zhu K D. Voltage-controlled slow light in asymmetry double quantum dots[J]. Applied Physics Letters, 89, 052115(2006).

    [36] Yuan C H, Zhu K D, Jiang Y W. Slow light control with electric fields in vertically coupled InGaAs/GaAs quantum dots[J]. Journal of Applied Physics, 102, 023109(2007).

    [37] Guo H J, Wang C F. Voltage control enhancement of Kerr nonlinearity in asymmetric double quantum dots system[J]. Laser & Optoelectronics Progress, 49, 051902(2012).

    Hongju Guo, Chen Chen, Aihong Yang. Voltage Control of Electromagnetically Induced Grating in Asymmetric Double Quantum Dot System[J]. Laser & Optoelectronics Progress, 2021, 58(23): 2305001
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