Skip to main content
arXiv is now an independent nonprofit! Learn more

Showing 1–16 of 16 results for author: Ng, H K

Searching in archive cond-mat. Search in all archives.
.
  1. arXiv:2602.12248  [pdf, ps, other

    cond-mat.mes-hall

    Simultaneous High-Fidelity Readout and Strong Coupling for a Donor-Based Spin Qubit

    Authors: Si Yan Koh, Weifan Wu, Kelvin Onggadinata, Arghya Maity, Mark Chiyuan Ma, Calvin Pei Yu Wong, Kuan Eng Johnson Goh, Bent Weber, Hui Khoon Ng, Teck Seng Koh

    Abstract: Superconducting resonators coupled to solid-state qubits offer a scalable architecture for long-range entangling operations and fast, high-fidelity readout. Realizing this requires low photon-loss rates and qubits with tunable electric dipole moments that couple strongly to the resonator's electric field while maintaining long coherence times. For spin qubits, spin-photon coupling is typically ach… ▽ More

    Submitted 23 April, 2026; v1 submitted 12 February, 2026; originally announced February 2026.

    Comments: Minor edits and typos fixed

  2. arXiv:2512.00761  [pdf, ps, other

    cond-mat.mes-hall

    High-fidelity regimes of resonator-mediated controlled-Z gates between quantum-dot qubits

    Authors: Guangzhao Yang, Marek Gluza, Si Yan Koh, Kelvin Onggadinata, Calvin Pei Yu Wong, Kuan Eng Johnson Goh, Bent Weber, Hui Khoon Ng, Teck Seng Koh

    Abstract: Semiconductor double quantum dot (DQD) qubits coupled via superconducting microwave resonators provide a powerful means of long-range manipulation of the qubits' spin and charge degrees of freedom. Quantum gates can be implemented by parametrically driving the qubits while their transition frequencies are detuned from the resonator frequency. Long-range two-qubit controlled-Z (CZ) gates have been… ▽ More

    Submitted 30 November, 2025; originally announced December 2025.

  3. arXiv:2411.01880  [pdf, ps, other

    quant-ph cond-mat.mes-hall

    Magic states are rarely the best resource to optimize: An analytical tool for qubit resource estimation in concatenated codes

    Authors: Marco Fellous-Asiani, Hui Khoon Ng, Robert S. Whitney

    Abstract: Concatenated error-correction schemes are well-understood routes to fault-tolerant quantum computing, and research on such schemes continues, including recent claims that they may be competitive with surface codes, and show potential when combined with high-rate Quantum Low Density Parity Check codes. However, there are few tools to evaluate the qubit resources required by concatenated schemes. We… ▽ More

    Submitted 5 May, 2026; v1 submitted 4 November, 2024; originally announced November 2024.

    Comments: Version 2 is rewritten for improved clarity; the first 8 pages summarize the methodology and main results, while the remaining 32 pages give details and generalizations of use to experts. (43 pages, 19 figures)

  4. arXiv:2404.06187  [pdf, other

    cond-mat.mes-hall quant-ph

    High-Fidelity CZ Gates in Double Quantum Dot -- Circuit QED Systems Beyond the Rotating-Wave Approximation

    Authors: Guangzhao Yang, Marek Gluza, Si Yan Koh, Calvin Pei Yu Wong, Kuan Eng Johnson Goh, Bent Weber, Hui Khoon Ng, Teck Seng Koh

    Abstract: Semiconductor double quantum dot (DQD) qubits coupled via superconducting microwave resonators provide a powerful means of long-range manipulation of the qubits' spin and charge degrees of freedom. Quantum gates can be implemented by parametrically driving the qubits while their transition frequencies are detuned from the resonator frequency. Long-range two-qubit CZ gates have been proposed for th… ▽ More

    Submitted 9 April, 2024; originally announced April 2024.

    Comments: 6 Pages, 3 Figures (Main text); 12 Pages, 1 Figure (Supplemental Material)

  5. arXiv:2307.07787  [pdf

    cond-mat.mtrl-sci cond-mat.mes-hall

    Reply to: Mobility overestimation in MoS$_2$ transistors due to invasive voltage probes

    Authors: Hong Kuan Ng, Du Xiang, Ady Suwardi, Guangwei Hu, Ke Yang, Yunshan Zhao, Tao Liu, Zhonghan Cao, Huajun Liu, Shisheng Li, Jing Cao, Qiang Zhu, Zhaogang Dong, Chee Kiang Ivan Tan, Dongzhi Chi, Cheng-Wei Qiu, Kedar Hippalgaonkar, Goki Eda, Ming Yang, Jing Wu

    Abstract: In this reply, we include new experimental results and verify that the observed non-linearity in rippled-MoS$_2$ (leading to mobility kink) is an intrinsic property of a disordered system, rather than contact effects (invasive probes) or other device issues. Noting that Peng Wu's hypothesis is based on a highly ordered ideal system, transfer curves are expected to be linear, and the carrier densit… ▽ More

    Submitted 18 July, 2023; v1 submitted 15 July, 2023; originally announced July 2023.

  6. arXiv:2209.05469  [pdf, other

    quant-ph cond-mat.mes-hall

    Optimizing resource efficiencies for scalable full-stack quantum computers

    Authors: Marco Fellous-Asiani, Jing Hao Chai, Yvain Thonnart, Hui Khoon Ng, Robert S. Whitney, Alexia Auffèves

    Abstract: In the race to build scalable quantum computers, minimizing the resource consumption of their full stack to achieve a target performance becomes crucial. It mandates a synergy of fundamental physics and engineering: the former for the microscopic aspects of computing performance, and the latter for the macroscopic resource consumption. For this we propose a holistic methodology dubbed Metric-Noise… ▽ More

    Submitted 16 October, 2023; v1 submitted 12 September, 2022; originally announced September 2022.

    Comments: Accepted in PRX Quantum: this arxiv version is similar to the final one that will appear in the journal

    Journal ref: PRX Quantum 4, 040319 (2023)

  7. arXiv:2104.05449   

    cond-mat.mtrl-sci physics.data-an stat.AP

    Current Overview of Statistical Fiber Bundles Model and Its Application to Physics-based Reliability Analysis of Thin-film Dielectrics

    Authors: James U. Gleaton, David Han, James D. Lynch, Hon Keung Tony Ng, Fabrizio Ruggeri

    Abstract: In this paper, we present a critical overview of statistical fiber bundles models. We discuss relevant aspects, like assumptions and consequences stemming from models in the literature and propose new ones. This is accomplished by concentrating on both the physical and statistical aspects of a specific load-sharing example, the breakdown (BD) for circuits of capacitors and related dielectrics. For… ▽ More

    Submitted 25 January, 2023; v1 submitted 9 April, 2021; originally announced April 2021.

    Comments: The majority of the materials in the paper has been published as a book

  8. arXiv:2007.01966  [pdf, other

    quant-ph cond-mat.mes-hall

    Limitations in quantum computing from resource constraints

    Authors: Marco Fellous-Asiani, Jing Hao Chai, Robert S. Whitney, Alexia Auffèves, Hui Khoon Ng

    Abstract: Fault-tolerant schemes can use error correction to make a quantum computation arbitrarily ac- curate, provided that errors per physical component are smaller than a certain threshold and in- dependent of the computer size. However in current experiments, physical resource limitations like energy, volume or available bandwidth induce error rates that typically grow as the computer grows. Taking int… ▽ More

    Submitted 8 August, 2021; v1 submitted 3 July, 2020; originally announced July 2020.

    Comments: 9 pages + Appendices; 6 figures. Improved presentation in the updated version, with a new discussion on crosstalk

    Journal ref: PRX Quantum 2, 040335 (2021)

  9. arXiv:1901.04661  [pdf

    cond-mat.mes-hall cond-mat.mtrl-sci

    Kondo Impurities in Two Dimensional MoS2 for Achieving Ultrahigh Thermoelectric Powerfactor

    Authors: Jing Wu, Yanpeng Liu, Yi Liu, Yongqing Cai, Yunshan Zhao, Hong Kuan Ng, Kenji Watanabe, Takashi Taniguchi, Gang Zhang, Chengwei Qiu, Dongzhi Chi, AH Castro Neto, John TL Thong, Kian Ping Loh, Kedar Hippalgaonkar

    Abstract: Local magnetic impurities arising from atomic vacancies in two-dimensional (2D) nanosheets are predicted to have a profound effect on charge transport due to resonant scattering, and provide a handle for enhancing thermoelectric properties through the Kondo effect. However, the effects of these impurities are often masked by external fluctuations and turbostratic interfaces, therefore, it is highl… ▽ More

    Submitted 14 January, 2019; originally announced January 2019.

    Comments: 20 pages, 5 figures

  10. arXiv:1811.06219  [pdf, other

    physics.comp-ph cond-mat.mtrl-sci cs.LG

    Predicting thermoelectric properties from crystal graphs and material descriptors - first application for functional materials

    Authors: Leo Laugier, Daniil Bash, Jose Recatala, Hong Kuan Ng, Savitha Ramasamy, Chuan-Sheng Foo, Vijay R Chandrasekhar, Kedar Hippalgaonkar

    Abstract: We introduce the use of Crystal Graph Convolutional Neural Networks (CGCNN), Fully Connected Neural Networks (FCNN) and XGBoost to predict thermoelectric properties. The dataset for the CGCNN is independent of Density Functional Theory (DFT) and only relies on the crystal and atomic information, while that for the FCNN is based on a rich attribute list mined from Materialsproject.org. The results… ▽ More

    Submitted 15 November, 2018; originally announced November 2018.

  11. arXiv:1612.04048  [pdf, other

    cond-mat.quant-gas physics.atom-ph quant-ph

    Airy-averaged gradient corrections for two-dimensional fermion gases

    Authors: Martin-Isbjörn Trappe, Yink Loong Len, Hui Khoon Ng, Berthold-Georg Englert

    Abstract: Building on the discussion in PRA 93, 042510 (2016), we present a systematic derivation of gradient corrections to the kinetic-energy functional and the one-particle density, in particular for two-dimensional systems. We derive the leading gradient corrections from a semiclassical expansion based on Wigner's phase space formalism and demonstrate that the semiclassical kinetic-energy density functi… ▽ More

    Submitted 16 April, 2017; v1 submitted 13 December, 2016; originally announced December 2016.

    Comments: 24 pages, 8 figures. Changes to version 1: layout modified, footnotes 1 & 12 added, one paragraph added on page 7

    Journal ref: Annals of Physics (NY) 385, 136-161 (2017)

  12. arXiv:1512.07367  [pdf, other

    cond-mat.quant-gas physics.atom-ph quant-ph

    Leading gradient correction to the kinetic energy for two-dimensional fermion gases

    Authors: Martin-Isbjörn Trappe, Yink Loong Len, Hui Khoon Ng, Cord Axel Müller, Berthold-Georg Englert

    Abstract: Density functional theory (DFT) is notorious for the absence of gradient corrections to the two-dimensional (2D) Thomas-Fermi kinetic-energy functional; it is widely accepted that the 2D analog of the 3D von Weizsäcker correction vanishes, together with all higher-order corrections. Contrary to this long-held belief, we show that the leading correction to the kinetic energy does not vanish, is una… ▽ More

    Submitted 26 February, 2016; v1 submitted 23 December, 2015; originally announced December 2015.

    Comments: 6 pages, 2 figures

    Journal ref: Phys. Rev. A 93, 042510 (2016)

  13. arXiv:1212.1951  [pdf, other

    cond-mat.dis-nn quant-ph

    One-dimensional transport revisited: A simple and exact solution for phase disorder

    Authors: Hui Khoon Ng, Berthold-Georg Englert

    Abstract: Disordered systems have grown in importance in the past decades, with similar phenomena manifesting themselves in many different physical systems. Because of the difficulty of the topic, theoretical progress has mostly emerged from numerical studies or analytical approximations. Here, we provide an exact, analytical solution to the problem of uniform phase disorder in a system of identical scatter… ▽ More

    Submitted 15 April, 2013; v1 submitted 9 December, 2012; originally announced December 2012.

    Comments: 10 pages, 2 figures. Version 2 contains an additional pertinent reference (Ref. [11]); we comment on how our work compares with the results of Ref. [11]

    Journal ref: Phys. Rev. B 88, 054201 (2013)

  14. arXiv:0911.3202  [pdf, ps, other

    quant-ph cond-mat.mes-hall

    Combining dynamical decoupling with fault-tolerant quantum computation

    Authors: Hui Khoon Ng, Daniel A. Lidar, John Preskill

    Abstract: We study how dynamical decoupling (DD) pulse sequences can improve the reliability of quantum computers. We prove upper bounds on the accuracy of DD-protected quantum gates and derive sufficient conditions for DD-protected gates to outperform unprotected gates. Under suitable conditions, fault-tolerant quantum circuits constructed from DD-protected gates can tolerate stronger noise, and have a low… ▽ More

    Submitted 18 July, 2011; v1 submitted 16 November, 2009; originally announced November 2009.

    Comments: 44 pages, 10 figures; v3 contains an expanded section on Eulerian dynamical decoupling

    Report number: CALT-68-2753

    Journal ref: Phys. Rev. A 84, 012305 (2011)

  15. arXiv:0810.4953  [pdf, other

    quant-ph cond-mat.mes-hall cond-mat.supr-con

    Fault-tolerant quantum computation versus Gaussian noise

    Authors: Hui Khoon Ng, John Preskill

    Abstract: We study the robustness of a fault-tolerant quantum computer subject to Gaussian non-Markovian quantum noise, and we show that scalable quantum computation is possible if the noise power spectrum satisfies an appropriate "threshold condition." Our condition is less sensitive to very-high-frequency noise than previously derived threshold conditions for non-Markovian noise.

    Submitted 27 October, 2008; originally announced October 2008.

    Comments: 30 pages, 6 figures

    Report number: CALT 68-2702

    Journal ref: Phys. Rev. A 79, 032318 (2009)

  16. arXiv:cond-mat/9805127  [pdf, ps, other

    cond-mat.str-el

    Weak magnetoresistance of disordered heavy fermion systems

    Authors: A. Chattopadhyay, M. Jarrell, H. R. Krishnamurthy, H. K. Ng, J. Sarrao, Z. Fisk

    Abstract: We compare the magnetoresistance of UCu$_{3.5}$Pd$_{1.5}$ with calculations done within the disordered heavy fermion framework of Miranda et al. using a phenomenological spectral function for the Anderson model, calibrated against Bethe ansatz and quantum Monte Carlo results. Both in experiment and theory, we find a weak negative magnetoresistance. In contrast, thermodynamic quantities have a st… ▽ More

    Submitted 11 May, 1998; originally announced May 1998.

    Comments: 4 pages, 3 figures