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Six Impossible Things: Fractional Charge From Laughlin'sWave Function

机译:六个不可能的事情:来自Laughlin'Wave功能的分数

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The Laughlin's wave function is found to be the zero-energy ground state of a δ-function Hamiltonian. The finitp negative value of the ground state energy which is 91 per cent of Wigner value, can be obtained only when Coulomb correlations are introduced. The Laughlin's wave function is of short range and it overlaps with that of the exact wave functions of small (number of electrons 2 or 5) systems. (i) It is impossible to obtain fractional charge from Laughlin's wave function. (ii) It is impossible to prove that the Laughlin's wave function gives the ground state of the Coulomb Hamiltonian. (iii) It is impossible to have particle-hole symmetry in the Laughlin's wave function. (iv) It is impossible to derive the value of m in the Laughlin's wave function. The value of m in can not be proved to be 3 or 5. (v) It is impossible to prove that the Laughlin's state is incompressible because the compressible states are also likely. (vi) It is impossible for the Laughlin's wave function to have spin. This effort is directed to explain the experimental data of quantum Hall effect in GaAs/AlGaAs.
机译:发现Laughlin的波浪功能是Δ函数Hamiltonian的零能量接地状态。只有在引入库仑相关性时,才能获得为Wigner值的91%的地位能量的Finitp负值。 Laughlin的波浪功能很短,它与小(电子2或5)系统的精确波函数重叠。 (i)不可能从Laughlin的波浪功能获得分数。 (ii)不可能证明Laughlin的波浪功能给出库仑汉密尔顿人的地面状态。 (iii)在Laughlin的波浪函数中不可能具有粒子孔对称性。 (iv)不可能从Laughlin的波浪函数中获得M的价值。不得证明M的价值是3或5.(v)不可能证明Laughlin的状态是不可压缩的,因为可能的可压缩状态也可能。 (vi)Laughlin的波浪功能是不可能有旋转的。旨在解释GaAs / Algaas中量子霍尔效应的实验数据。

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