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Space and time analysis of the N_2 vibrational non-equilibrium in the N_2 and air nanosecond discharge afterglow

机译:N_2和空气纳秒排放余量N_2振动非平衡的空间和时间分析

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Knowledge of the aero-optical effects accompanying hypersonic flight conditions is of critical importance to ensure reliable operation of optical-based instrumentation and air date system. However, such effects dependent on the scalar polarizability are scarcely known in literatures under the thermal non-equilibrium and molecule internal excitation conditions. In this paper, nanosecond pulsed discharges in N_2 and air at a low-pressure condition (i.e. 90 Torr) have been created to reproduce such non-equilibrium condition and to provide a test bed for quantitative study the scalar polarizability under non-equilibrium. Spontaneous Raman spectroscopy (SRS) and optical emission spectroscopy (OES) have been used to investigate the non-equilibrium process in the discharge afterglow. The rotational and vibrational temperatures of both the ground state N_2(X~3Σ_g~+)and the electronically excited state N_2(C~3Π_u) are measured by the spectral fitting and the Boltzmann plot. The ratio between the first- and higher-level vibrational temperatures of the ground state has been used to investigate the nitrogen vibrational non-equilibrium as the function of space and time. Meanwhile, the averaged vibrational quanta have been applied to understand the energy loading and transfer in the ground state vibration modes. The electronically excited state provides an extra path to study the energy transfer among states through the e-V, V-V, and V-T processes at different timescales. The work provides the scheme to calibrate the non-equilibrium states which have been further used to measure the scalar polarizability under the same condition and study the dependence of the polarizability on the gas temperature as well as the vibrational non-equilibrium states.
机译:伴随过高度飞行条件的航空光学效应的知识是重要的重要性,以确保光基仪器和空气日系统的可靠运行。然而,在热非平衡和分子内励磁条件下的文献中,依赖于标量极化性的这种效果几乎已知。在本文中,在纳秒的低压条件(即90托)已经创建了再现这样的非平衡条件,并为定量研究提供测试床下非平衡的标量极化脉冲在N_2和空气放电。自发拉曼光谱(SRS)和光发射光谱(OES)已被用于研究排出余辉中的非平衡过程。通过光谱拟合和螺栓塑料图测量地态N_2(X〜3σ_g〜+)和电子激发态N_2(C〜3π_U)的旋转和振动温度。基于地位的第一和更高级振动温度之间的比率已经用于研究氮振动非平衡作为空间和时间的函数。同时,已经应用平均振动量子以了解地面振动模式中的能量负载和转移。电子激发状态提供了一种额外的路径,以通过在不同时间尺度的E-V,V-V和V-T过程中研究状态之间的能量转移。该工作提供了校准的方案,以校准已经进一步用于测量相同条件下的标量极化的非平衡状态,并研究极化性对气体温度以及振动非平衡状态的依赖性。

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