论文标题
按需生成量子点 - 腔体系统中的高阶Fock状态
On-demand generation of higher-order Fock states in quantum-dot--cavity systems
论文作者
论文摘要
在量子信息科学中,高阶状态的按需制备至关重要。我们提出并比较不同的协议,以在固态量子点 - 腔体系统中生成高阶Fock状态。这些方案利用一系列激光脉冲来激发量子点激子和抗谐振脉冲,以控制DOT和腔之间的失沟。我们的理论研究包括点和空腔损失过程以及以数值完整的方式与纵向声音子与纵向声音子耦合。通过超越量子点的两级近似值,我们研究了有限交换分裂的影响,较高的能量激子状态的影响以及具有线性极化激光脉冲的激发,从而导致了比ixciton状态的有害职业。我们预测,在现实条件下,一项协议可以使空腔与量子点共振,直到达到所需的目标状态可以将保真度传递给Fock State $ | 5 \ rangle $高于$ 40 \,\%$。
The on-demand preparation of higher-order Fock states is of fundamental importance in quantum information sciences. We propose and compare different protocols to generate higher-order Fock states in solid state quantum-dot--cavity systems. The protocols make use of a series of laser pulses to excite the quantum dot exciton and off-resonant pulses to control the detuning between dot and cavity. Our theoretical studies include dot and cavity loss processes as well as the pure-dephasing type coupling to longitudinal acoustic phonons in a numerically complete fashion. By going beyond the two-level approximation for quantum dots, we study the impact of a finite exchange splitting, the impact of a higher energetic exciton state, and an excitation with linearly polarized laser pulses leading to detrimental occupations of the biexciton state. We predict that under realistic conditions, a protocol which keeps the cavity at resonance with the quantum dot until the desired target state is reached is able to deliver fidelities to the Fock state $| 5\rangle$ well above $40\,\%$.