A realistic non-local heat engine based on Coulomb-coupled systems

被引:7
|
作者
Singha, Aniket [1 ]
机构
[1] Indian Inst Technol Kharagpur, Dept Elect & Elect Commun Engn, Kharagpur 721302, W Bengal, India
关键词
THERMOELECTRIC PERFORMANCE; QUANTUM DOTS; TRANSPORT; ENERGY; NANOWIRES; BLOCKADE; FIGURE; CHARGE;
D O I
10.1063/5.0007347
中图分类号
O59 [应用物理学];
学科分类号
摘要
Optimal non-local heat engines based on Coulomb-coupled systems demand a sharp step-like change in the energy-resolved system-to-reservoir coupling around the ground state of quantum dots. Such a sharp step-like transition in the system-to-reservoir coupling cannot be achieved in a realistic scenario. Here, I propose a realistic design for a non-local heat engine based on the Coulomb-coupled system, which circumvents the need for any change in the system-to-reservoir coupling, demanded by the optimal setups discussed in the literature. I demonstrate that an intentionally introduced asymmetry (or energy difference) in the ground state configuration between adjacent tunnel-coupled quantum dots, in conjugation with Coulomb coupling, is sufficient to convert the stochastic fluctuations from a non-local heat source into a directed flow of thermoelectric current. The performance, along with the regime of operation, of the proposed heat engine is then theoretically investigated using the quantum master-equation approach. It is demonstrated that the theoretical maximum power output for the proposed setup s limited to about 50% of the optimal design. Despite a lower performance compared to the optimal setup, the novelty of the proposed design lies in the conjunction of fabrication simplicity along with a reasonable power output. At the end, the sequential transport processes leading to a performance deterioration of the proposed setup are analyzed and a method to alleviate such transport processes is discussed. The setup proposed in this paper can be used to design and fabricate high-performance non-local cryogenic heat engines.
引用
收藏
页数:17
相关论文
共 35 条
  • [21] Non-Local Vectorial Internal Variables and Generalized Guyer-Krumhansl Evolution Equations for the Heat Flux
    Restuccia, Liliana
    Jou, David
    ENTROPY, 2023, 25 (09)
  • [22] Non-local generalization of Darcy's law based on empirically extracted conductivity kernels
    Jenny, Patrick
    Meyer, Daniel W.
    COMPUTATIONAL GEOSCIENCES, 2017, 21 (5-6) : 1281 - 1288
  • [23] Non-local generalization of Darcy’s law based on empirically extracted conductivity kernels
    Patrick Jenny
    Daniel W. Meyer
    Computational Geosciences, 2017, 21 : 1281 - 1288
  • [24] Non-local energy based fatigue life calculation method under multiaxial variable amplitude loadings
    Saintier, Nicolas
    Palin-luc, Thierry
    Benabes, Jerome
    Cocheteux, Francis
    INTERNATIONAL JOURNAL OF FATIGUE, 2013, 54 : 68 - 83
  • [25] Fracture of viscoelastic materials: FEM implementation of a non-local & rate form-based finite-deformation constitutive theory
    Thamburaja, P.
    Sarah, K.
    Srinivasa, A.
    Reddy, J. N.
    COMPUTER METHODS IN APPLIED MECHANICS AND ENGINEERING, 2019, 354 : 871 - 903
  • [26] The Role of Non-Local Effects on Surface Sensible Heat Flux Under Different Types of Thermal Structures Over the Arctic Sea-Ice Surface
    Liu, Changwei
    Yang, Qinghua
    Gao, Zhongming
    Shupe, Matthew D.
    Han, Bo
    Zhang, Huixian
    Peng, Shijie
    Xi, Xingya
    Chen, Dake
    GEOPHYSICAL RESEARCH LETTERS, 2024, 51 (04)
  • [27] On a generalized non-local two-temperature heat transfer DAE modeling/simulation methodology for metal-nonmetal thermal inter-facial problems
    Xue, Tao
    Zhang, Xiaobing
    Tamma, Kumar K.
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2019, 138 : 508 - 515
  • [28] Two-step morphology-based denoising and non-local means smoothing improves micro-computed tomography digital rock images
    Gupta, Utkarsh
    Periyasamy, Vijitha
    Hofmann, Ronny
    Prakash, Jaya
    Yalavarthy, Phaneendra K.
    GEOPHYSICAL PROSPECTING, 2024, 72 (05) : 2049 - 2063
  • [29] Potential of Organic Rankine Cycle for waste heat recovery from piston engine-based power plants in isolated power systems
    Garcia-Afonso, Oscar
    Delgado-Torres, Agustin M.
    Gonzalez-Diaz, Benjamin
    APPLIED THERMAL ENGINEERING, 2022, 203
  • [30] Experimental comparison between four CO2-based transcritical Rankine cycle (CTRC) systems for engine waste heat recovery
    Shi, Lingfeng
    Shu, Gequn
    Tian, Hua
    Huang, Guangdai
    Chen, Tianyu
    Li, Xiaoya
    Li, Daiqiang
    ENERGY CONVERSION AND MANAGEMENT, 2017, 150 : 159 - 171