In eukaryote cells,cargos are often transported cooperatively by kinesin motors and nonmotor microtubule-associated proteins(MAPs).The prior in vitro experimental data showed that the velocity of the cargo transported...
This work was supported by the National Natural Science Foundation of China(Grant No.11775301).
Many intracellular transports are performed by multiple molecular motors in a cooperative manner.Here,we use stochastic simulations to study the cooperative transport by multiple kinesin motors,focusing mainly on effe...
Zhejiang Province Commonweal Projects(Grant No.LGF18A050001);China Scholarship Council(Grant No.201708330401);National Natural Science Foundation of China(Grant No.11605055);Fundamental Research Funds for the Central Universities of China(Grant No.2017MS054)。
The transport of a chain of charged particles with a transverse degree of freedom is investigated in a 2D asymmetric potential.Here,the energy of the periodic driving force is converted into motion in the vertical dir...
Supported by the Natural Science Foundation of Zhejiang Province(Grant Nos.LR17A050001);the National Natural Science Foundation of China(Grant Nos.11974094 and 11674080).
We propose a new microfluid chip for transporting micro and nano particles.The device consists of chemical stripe pathways full of fuel species,which can be realized in experiments by chemical surface reactions that f...
Supported by National Natural Science Foundation of China under Grant No.11675097
We study a particular combination of charge and heat currents, which is decoupled with the heat current.The "heat-decoupled"(HD) current can be transported by diffusion at long distances, when the thermoelectric effec...
University of Kashan for supporting this work by Grant No.463821/03
We study the spin-resolved transport in a two-terminal graphene nanoflake device with a Rashba spinorbit coupling region in the center of the device. The Green's function method is applied to the system and the spin t...
Supported by the National Natural Science Foundation of China under Grant No.11547203;the Research Project of Education Department in Sichuan Province of China under Grant No.15ZB0457
We theoretically present the results for a scanning tunneling transport between a metallic tip and a Kondo lattice.We calculate the density of states(DOS)and the tunneling current and differential conductance(DC)under...
Supported by the National Natural Science Foundation of China under Grant Nos.11174214,11204192;the NSAF Joint Fund Jointly set up by the National Natural Science Foundation of China;the Chinese Academy of Engineering Physics under Grant Nos.U1230201and U1430117
We theoretically investigate the spin filtering transport of double parallel quantum wires(QWs) side-coupled to a grapheme sheet and sandwiched between two ferromagnetic(FM) leads.The dependences of the wire-graphene ...
In this work we have investigated electron and hole transport through zig zag carbon nanotubes by solving Boltzmann Transport Equation(BTE).We find that the mobility of electrons is rather greater than holes.Carbo nan...
Supported by the National Nature Science Foundation of China under Grant Nos.10604005 and 10974015; the Program for New Century Excellent Talents in University under Grant No.NCET-08-0044
Kondo transport properties through a Kondo-type quantum dot (QD) with a side-coupled triple-QD structure are systematically investigated by using the non-equilibrium Green's function method. We firstly derive the f...