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The influence of helix wire diameter on the modes in a helix waveguide

机译:螺旋线直径对螺旋波导中模式的影响

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The properties of waveguide modes (phase velocity greater than velocity of light) are investigated for a helix line of finite wire diameter and with an arbitrary surrounding medium. It is assumed that the guide wavelength is always much greater than the pitch of the helix. Use of the helix waveguide as a mode filter in transmitting the H01 mode is studied in particular. It is shown that the magnitude of the losses and the angle of pitch of the helix determine whether the waveguide modes are capable of existence. For a given angle of pitch the losses must be larger than a definite value to make waveguide modes possible. If the losses are less than this value, the helix line has only the character of a delay line (phase velocity smaller than velocity of light). On helix lines with an angle of pitch ¿ ¿ 0.1 the copper losses in the helix wire alone are sufficient to allow the existence of the H0n modes. For the Hmn modes, which interfere with H01 mode transmission, a maximum attainable loss exists which can be achieved by correct selection of the wire diameter in conjunction with the surrounding medium. This maximum loss is inversely proportional to the square of the helix diameter and to the frequency. For instance, with a helix diameter of 5 cm and a frequency of 50 Gc/s the maximum attenuation of the H12 mode is ¿ = 0.0158 nepers/cm, and hence exceeds by a factor of 3 180 the attenuation in a homogeneous circular copper waveguide having the same dimensions.
机译:对于具有有限导线直径和任意周围介质的螺旋线,研究了波导模式的特性(相速度大于光速)。假设引导波长始终远大于螺旋线的螺距。特别地,研究了在传输H01模式时使用螺旋形波导作为模式滤波器。结果表明,损耗的大小和螺旋的螺距角决定了波导模式是否存在。对于给定的螺距角,损耗必须大于确定值才能使波导模式成为可能。如果损耗小于此值,则螺旋线仅具有延迟线的特征(相速度小于光速)。在螺距角为Âθφ0.1的螺旋线上,仅螺旋线中的铜损足以允许存在H0n模。对于干扰H01模式传输的Hmn模式,存在最大可实现的损耗,可以通过与周围介质一起正确选择导线直径来实现。该最大损耗与螺旋直径的平方和频率成反比。例如,螺旋直径为5 cm,频率为50 Gc / s,H12模式的最大衰减为Â= 0.0158 nepers / cm,因此,在均匀情况下,衰减超过3 180倍具有相同尺寸的圆形铜波导。

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