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Lecture 4 - Coulomb blockade & SET Fulton TA and Dolan GJ, Phys. Rev. Lett. 59 (1987) 109. Circuit for SET transistor 1 V1 C1 R1 VC Q Vg nanocluster Cg C2 tunnelling junction R2 tunnelling junction When an electron tunnels onto or off the cluster already containing n excess electrons, the change in electrostatic energy is: U V2 1 ne 2 21 e 2 C Algebra – first calculate charge on middle island: Q Qi C1 VC V1 Cg VC Vg C2 VC V2 i 1 Q VC C CiVi ne C C1 Cg C2 i Rearrange2 VC Q CiVi i C Electrostatic energy Circuit 2for SET transistor 2 Qi U i 2Ci expand Qi as CiVi and substitute in (2) 1Q 1 1 1 2 2 U CiVi CiVi 2 C 2 i 2 C i 2 2 Only term that varies as the charge on the cluster varies. Consider process when 1 charge tunnels onto or off the cluster. n n 1 2 2 2 1 n 1 e 1 n e 1 U (n) ne 2 21 e 2 2 C 2 C C 2 3 Circuit for SET transistor V1 C1 R1 VC Q Vg tunnelling junction nanocluster Cg C2 When an electron tunnels onto or off the cluster already containing n excess electrons, the change in electrostatic energy is: R2 tunnelling junction 1 U ne 2 21 e 2 C V2 The work done by the voltage sources when an electron tunnels through the jth junction is: e Wi CiVi C i j e W eV j C jV j C j Circuit for SET transistor 0 C1 R1 VC Q Vg enanocluster Cg C2 tunnelling junction R2 V Q0 CgVg Q00 tunnelling junction Enthalpy change e e E ne Q0 C2V C 2 1 e e E ne Q C V 0 1 C 2 2 Coulomb staircase Electrons fill island until Tunnelling current E1 e e ne Q CV 0 0 C 2 E2 1 e Q0 1 I V n eR2 2 R2 C e 2 Single electron transistor blockade Experimental Coulomb staircase Wilkins R et al., Phys. Rev. Lett. 63 (1989) 801.