Gate slots over 2DES support plasmon resonances at L = λ/8 + nλ/2 due to a -π/4 reflection phase shift at the gate edge, with weak leakage and up to 50% dipole-limit absorption.
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Exact analytical expressions for complex plasmon reflection and transmission coefficients at gated-ungated interfaces in 2DES are derived via the Wiener-Hopf method, accounting for evanescent fields and radiative losses.
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Unconventional quantization of 2D plasmons in cavities formed by gate slots
Gate slots over 2DES support plasmon resonances at L = λ/8 + nλ/2 due to a -π/4 reflection phase shift at the gate edge, with weak leakage and up to 50% dipole-limit absorption.
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Exact theory of plasmon reflection and transmission in partially gated two-dimensional system
Exact analytical expressions for complex plasmon reflection and transmission coefficients at gated-ungated interfaces in 2DES are derived via the Wiener-Hopf method, accounting for evanescent fields and radiative losses.