@article{Yu2025,title={Schr\"{o}dinger cat states of a nuclear spin qudit in silicon},volume={21},issn={1745-2481},url={http://dx.doi.org/10.1038/s41567-024-02745-0},doi={10.1038/s41567-024-02745-0},number={3},journal={Nature Physics},publisher={Springer Science and Business Media LLC},author={Yu, Xi and Wilhelm, Benjamin and Holmes, Danielle and Vaartjes, Arjen and Schwienbacher, Daniel and Nurizzo, Martin and Kringhøj, Anders and Blankenstein, Mark R. van and Jakob, Alexander M. and Gupta, Pragati and Hudson, Fay E. and Itoh, Kohei M. and Murray, Riley J. and Blume-Kohout, Robin and Ladd, Thaddeus D. and Anand, Namit and Dzurak, Andrew S. and Sanders, Barry C. and Jamieson, David N. and Morello, Andrea},year={2025},month=jan,pages={362–367},dimensions={true}}
Certifying the quantumness of a nuclear spin qudit through its uniform precession
Arjen Vaartjes, Martin Nurizzo, Lin Htoo Zaw, Benjamin Wilhelm, and 15 more authors
@article{Vaartjes2025,title={Certifying the quantumness of a nuclear spin qudit through its uniform precession},volume={1},issn={2950-6360},url={http://dx.doi.org/10.1016/j.newton.2025.100017},doi={10.1016/j.newton.2025.100017},number={1},journal={Newton},publisher={Elsevier BV},author={Vaartjes, Arjen and Nurizzo, Martin and Zaw, Lin Htoo and Wilhelm, Benjamin and Yu, Xi and Holmes, Danielle and Schwienbacher, Daniel and Kringhøj, Anders and van Blankenstein, Mark R. and Jakob, Alexander M. and Hudson, Fay E. and Itoh, Kohei M. and Murray, Riley J. and Blume-Kohout, Robin and Anand, Namit and Dzurak, Andrew S. and Jamieson, David N. and Scarani, Valerio and Morello, Andrea},year={2025},month=mar,pages={100017},dimensions={true}}
Benchmarking the performance of a high-Q cavity qudit using random unitaries
Nicholas Bornman, Tanay Roy, Joshua A Job, Namit Anand, and 3 more authors
@article{Bornman2025,title={Benchmarking the performance of a high-Q cavity qudit using random unitaries},volume={10},issn={2058-9565},url={http://dx.doi.org/10.1088/2058-9565/adc47c},doi={10.1088/2058-9565/adc47c},number={2},journal={Quantum Science and Technology},publisher={IOP Publishing},author={Bornman, Nicholas and Roy, Tanay and Job, Joshua A and Anand, Namit and Perdue, Gabriel N and Zorzetti, Silvia and Alam, M Sohaib},year={2025},month=apr,pages={025062},}
General protocols for the efficient distillation of indistinguishable photons
Jason Saied, Jeffrey Marshall, Namit Anand, and Eleanor G. Rieffel
@article{saied2025general,title={General protocols for the efficient distillation of indistinguishable photons},author={Saied, Jason and Marshall, Jeffrey and Anand, Namit and Rieffel, Eleanor G.},journal={Phys. Rev. Appl.},volume={23},issue={3},pages={034079},numpages={48},year={2025},month=mar,publisher={American Physical Society},doi={10.1103/PhysRevApplied.23.034079},url={https://link.aps.org/doi/10.1103/PhysRevApplied.23.034079},}
2024
Applications and resource estimates for open system simulation on a quantum computer
Evgeny Mozgunov, Jeffrey Marshall, and Namit Anand
@misc{mozgunov2024applicationsresourceestimatesopen,title={Applications and resource estimates for open system simulation on a quantum computer},author={Mozgunov, Evgeny and Marshall, Jeffrey and Anand, Namit},year={2024},archiveprefix={arXiv},primaryclass={quant-ph},url={https://arxiv.org/abs/2406.06281},}
Assessing and advancing the potential of quantum computing: A NASA case study
Eleanor G. Rieffel, Ata Akbari Asanjan, M. Sohaib Alam, Namit Anand, and 19 more authors
@article{Rieffel_2024,title={Assessing and advancing the potential of quantum computing: A NASA case study},volume={160},issn={0167-739X},doi={http://dx.doi.org/10.1016/j.future.2024.06.012},journal={Future Generation Computer Systems},publisher={Elsevier BV},author={Rieffel, Eleanor G. and Asanjan, Ata Akbari and Alam, M. Sohaib and Anand, Namit and Bernal Neira, David E. and Block, Sophie and Brady, Lucas T. and Cotton, Steve and Gonzalez Izquierdo, Zoe and Grabbe, Shon and Gustafson, Erik and Hadfield, Stuart and Lott, P. Aaron and Maciejewski, Filip B. and Mandrà, Salvatore and Marshall, Jeffrey and Mossi, Gianni and Bauza, Humberto Munoz and Saied, Jason and Suri, Nishchay and Venturelli, Davide and Wang, Zhihui and Biswas, Rupak},year={2024},month=nov,pages={598–618},}
Dual-Unitary Shadow Tomography
Ahmed A. Akhtar, Namit Anand, Jeffrey Marshall, and Yi-Zhuang You
@misc{akhtar2024dualunitary,title={Dual-Unitary Shadow Tomography},author={Akhtar, Ahmed A. and Anand, Namit and Marshall, Jeffrey and You, Yi-Zhuang},year={2024},doi={https://doi.org/10.48550/arXiv.2404.01068},archiveprefix={arXiv},primaryclass={quant-ph},}
Advancing quantum networking: some tools and protocols for ideal and noisy photonic systems
Jason Saied, Jeffrey Marshall, Namit Anand, Shon Grabbe, and 1 more author
In Quantum Computing, Communication, and Simulation IV, Mar 2024
@inproceedings{Saied_2024,title={Advancing quantum networking: some tools and protocols for ideal and noisy photonic systems},url={http://dx.doi.org/10.1117/12.3023843},doi={10.1117/12.3023843},booktitle={Quantum Computing, Communication, and Simulation IV},publisher={SPIE},author={Saied, Jason and Marshall, Jeffrey and Anand, Namit and Grabbe, Shon and Rieffel, Eleanor G.},editor={Hemmer, Philip R. and Migdall, Alan L.},year={2024},month=mar,}
2023
Simulation of quantum optics by coherent state decomposition
@article{PhysRevB.108.134305,title={Scrambling and operator entanglement in local non-Hermitian quantum systems},author={Barch, Brian and Anand, Namit and Marshall, Jeffrey and Rieffel, Eleanor and Zanardi, Paolo},journal={Phys. Rev. B},volume={108},issue={13},pages={134305},numpages={19},year={2023},month=oct,publisher={American Physical Society},doi={10.1103/PhysRevB.108.134305},}
Scrambling of algebras in open quantum systems
Faidon Andreadakis, Namit Anand, and Paolo Zanardi
@article{PhysRevA.107.042217,title={Scrambling of algebras in open quantum systems},author={Andreadakis, Faidon and Anand, Namit and Zanardi, Paolo},journal={Phys. Rev. A},volume={107},issue={4},pages={042217},numpages={17},year={2023},month=apr,publisher={American Physical Society},doi={10.1103/PhysRevA.107.042217},}
2022
BROTOCs and Quantum Information Scrambling at Finite Temperature
@article{Anand2022brotocsquantum,doi={10.22331/q-2022-06-27-746},title={{BROTOC}s and {Q}uantum {I}nformation {S}crambling at {F}inite {T}emperature},author={Anand, Namit and Zanardi, Paolo},journal={{Quantum}},issn={2521-327X},publisher={{Verein zur F{\"{o}}rderung des Open Access Publizierens in den Quantenwissenschaften}},volume={6},pages={746},month=jun,year={2022},}
2021
Information scrambling and chaos in open quantum systems
@article{PhysRevA.103.062214,title={Information scrambling and chaos in open quantum systems},author={Zanardi, Paolo and Anand, Namit},journal={Phys. Rev. A},volume={103},issue={6},pages={062214},numpages={16},year={2021},month=jun,publisher={American Physical Society},doi={10.1103/PhysRevA.103.062214},}
Quantum coherence as a signature of chaos
Namit Anand, Georgios Styliaris, Meenu Kumari, and Paolo Zanardi
@article{PhysRevResearch.3.023214,title={Quantum coherence as a signature of chaos},author={Anand, Namit and Styliaris, Georgios and Kumari, Meenu and Zanardi, Paolo},journal={Phys. Rev. Res.},volume={3},issue={2},pages={023214},numpages={25},year={2021},month=jun,publisher={American Physical Society},doi={10.1103/PhysRevResearch.3.023214},dimensions={true}}
Information Scrambling over Bipartitions: Equilibration, Entropy Production, and Typicality
Georgios Styliaris, Namit Anand, and Paolo Zanardi
@article{PhysRevLett.126.030601,title={Information Scrambling over Bipartitions: Equilibration, Entropy Production, and Typicality},author={Styliaris, Georgios and Anand, Namit and Zanardi, Paolo},journal={Phys. Rev. Lett.},volume={126},issue={3},pages={030601},numpages={8},year={2021},month=jan,publisher={American Physical Society},doi={10.1103/PhysRevLett.126.030601},dimensions={true}}
2019
Quantum coherence and the localization transition
Georgios Styliaris, Namit Anand, Lorenzo Campos Venuti, and Paolo Zanardi
@article{PhysRevB.100.224204,title={Quantum coherence and the localization transition},author={Styliaris, Georgios and Anand, Namit and Campos Venuti, Lorenzo and Zanardi, Paolo},journal={Phys. Rev. B},volume={100},issue={22},pages={224204},numpages={13},year={2019},month=dec,publisher={American Physical Society},doi={10.1103/PhysRevB.100.224204},}
Quantifying non-Markovianity: a quantum resource-theoretic approach
@article{PhysRevLett.121.220502,title={Demonstration of Fidelity Improvement Using Dynamical Decoupling with Superconducting Qubits},author={Pokharel, Bibek and Anand, Namit and Fortman, Benjamin and Lidar, Daniel A.},journal={Phys. Rev. Lett.},volume={121},issue={22},pages={220502},numpages={6},year={2018},month=nov,publisher={American Physical Society},doi={10.1103/PhysRevLett.121.220502},dimensions={true}}
@article{PhysRevA.97.032342,title={Asymmetry and coherence weight of quantum states},author={Bu, Kaifeng and Anand, Namit and Singh, Uttam},journal={Phys. Rev. A},volume={97},issue={3},pages={032342},numpages={10},year={2018},month=mar,publisher={American Physical Society},doi={10.1103/PhysRevA.97.032342},}
2016
Comment on ‘Limitations on the superposition principle: superselection rules in non-relativistic quantum mechanics’
@article{Anand_2016,doi={10.1088/0143-0807/37/4/048003},year={2016},month=jun,publisher={IOP Publishing},volume={37},number={4},pages={048003},author={Anand, Namit},title={Comment on ‘Limitations on the superposition principle: superselection rules in non-relativistic quantum mechanics’},journal={European Journal of Physics},}
Coherence and Entanglement Monogamy in the Discrete Analogue of Analog Grover Search
@misc{1611.04542,author={Anand, Namit and Pati, Arun Kumar},title={Coherence and Entanglement Monogamy in the Discrete Analogue of Analog Grover Search},year={2016},}
@article{Anand_2015,doi={10.1007/s11128-015-1105-y},year={2015},month=aug,publisher={Springer Science and Business Media {LLC}},volume={14},number={11},pages={4027--4038},author={Anand, Namit and Benjamin, Colin},title={Do quantum strategies always win?},journal={Quantum Information Processing},}