Publications by topic

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Magnetic Feshbach resonances / Ultracold collisions

  1. M. D. Frye, P. S. Żuchowski, M. Tomza
    Spin–spin interaction and magnetic Feshbach resonances in collisions of high-spin atoms with closed-shell atoms
    Phys. Rev. Research 6, 023254 (2024) | pdf
  2. T. Karman, M. Gronowski, M. Tomza, J. J. Park, H. Son, Y.-K. Lu, A. O. Jamison, W. Ketterle
    Ab initio calculation of the spectrum of Feshbach resonances in NaLi + Na collisions
    Phys. Rev. A 108, 023309 (2023) | pdf
  3. J. J. Park, H. Son, Y.-K. Lu, T. Karman, M. Gronowski, M. Tomza, A. O. Jamison, W. Ketterle
    Spectrum of Feshbach resonances in NaLi + Na collisions
    Phys. Rev. X 13, 031018 (2023) | pdf
  4. L. Tanzi, C. R. Cabrera, J. Sanz, P. Cheiney, M. Tomza, L. Tarruell
    Feshbach resonances in potassium Bose-Bose mixtures
    Phys. Rev. A 98, 062712 (2018) | pdf
  5. K. Zaremba-Kopczyk, P. S. Żuchowski, M. Tomza
    Magnetically tunable Feshbach resonances in ultracold gases of europium atoms and mixtures of europium and alkali-metal atoms
    Phys. Rev. A, 98, 032704 (2018) | pdf
  6. M. Tomza, R. Gonzalez-Ferez, C. P. Koch, R. Moszynski
    Controlling magnetic Feshbach resonances in polar open-shell molecules with non-resonant light
    Phys. Rev. Lett. 112, 113201 (2014) | pdf

Quantum many-body physics

  1. J. Dobrzyniecki, P. Heim, M. Tomza
    Tunable two-species spin models with Rydberg atoms in circular and elliptical states
    submitted to Phys. Rev. X / arxiv (2024)
  2. M. Suchorowski, A. Badamshina, M. Lemeshko, M. Tomza, A. Volosniev
    Quantum rotor in a two-dimensional mesoscopic Bose gas
    submitted to SciPost Phys. / arxiv (2024)
  3. J. Dobrzyniecki, M. Tomza
    Quantum simulation of the central spin model with a Rydberg atom and polar molecules in optical tweezers
    Phys. Rev. A 108, 052618 (2023) | pdf
  4. B. Midya, M. Tomza, R. Schmidt, M. Lemeshko
    Rotation of cold molecular ions inside a Bose-Einstein condensate
    Phys. Rev. A 94, 041601(R) (2016) | pdf
    Rapid Communication
  5. T. Grining, M. Tomza, M. Lesiuk, M. Przybytek, M. Musial, R. Moszynski, M. Lewenstein, P. Massignan
    Crossover between few and many fermions in a harmonic trap
    Phys. Rev. A 92, 061601(R) (2015) | pdf
    Rapid Communication
  6. T. Grining, M. Tomza, M. Lesiuk, M. Przybytek, M. Musial, P. Massignan, M. Lewenstein, R. Moszynski
    Many interacting fermions in a one-dimensional harmonic trap: a quantum-chemical treatment
    New J. Phys. 17, 115001 (2015) | pdf
    Special issue on “Strongly Interacting Quantum Gases in One Dimension”

Machine learning

  1. A. Dawid, J. Arnold, B. Requena, A. Gresch, M. Płodzień, K. Donatella, K. Nicoli, P. Stornati, R. Koch, M. Büttner, R. Okuła, G. Muñoz–Gil, R. A. Vargas–Hernández, A. Cervera-Lierta, J. Carrasquilla, V. Dunjko, M. Gabrié, P. Huembeli, E. van Nieuwenburg, F. Vicentini, L. Wang, S. J. Wetzel, G. Carleo, E. Greplová, R. Krems, F. Marquardt, M. Tomza, M. Lewenstein, A. Dauphin
    Machine learning in quantum sciences
    Cambridge University Press in press (2024) | arxiv
    Book / Review article / Lecture notes
  2. K. Cybiński, M. Płodzień, M. Tomza, M. Lewenstein , A. Dauphin, A. Dawid
    Characterizing out-of-distribution generalization of neural networks: application to the disordered Su-Schrieffer-Heeger model
    Mach. Learn.: Sci. Technol. in press (2024)
  3. A. Dawid, P. Huembeli, M. Tomza, M. Lewenstein, A. Dauphin
    Hessian-based toolbox for reliable and interpretable machine learning in physics
    Mach. Learn.: Sci. Technol. 3, 015002 (2022) | pdf
  4. A. Dawid, P. Huembeli, M. Tomza, M. Lewenstein, A. Dauphin
    Phase Detection with Neural Networks: Interpreting the Black Box
    New J. Phys. 22, 115001 (2020) | pdf
    Focus issue on “Machine Learning Across Physics”
  5. L. Dawid, M. Tomza, A. Dawid
    Estimation of usable area of flat-roof residential buildings using topographic data with machine learning methods
    Remote Sens. 11, 2382 (2019) | pdf
  1. A. Wojciechowska, M. Tomza, M. T. Eiles
    Ultralong-range Rydberg molecules of Hg atoms
    submitted to Phys. Rev. A / arxiv (2024)
  2. J. D. Polet, Y. Chamorro, L. F. Pašteka, S. Hoekstra, M. Tomza, A. Borschevsky, I. A. Aucar
    P,T-odd effects in YbCu, YbAg and YbAu
    J. Chem. Phys. in press (2024)
  3. Y.-X. Liu, L. Zhu, J. Luke, M. C. Babin, T. V. Tscherbul, M. Gronowski, H. Ladjimi, M. Tomza, J. L. Bohn, K.-K. Ni
    Hyperfine-to-rotational energy transfer in ultracold atom-molecule collisions
    submitted to Nature Chem. / arxiv (2024)
  4. M. Z. Walewski, M. D. Frye, O. Katz, M. Pinkas, R. Ozeri, M. Tomza
    Quantum control of ion-atom collisions beyond the ultracold regime
    submitted to Science Adv. / arxiv (2024)
  5. S. Ganesan-Santhi, M. D. Frye, M. Gronowski, M. Tomza
    Interactions and cold collisions of AlF in the ground and excited electronic states with He
    submitted to J. Phys. Chem. A / arxiv (2024)
  6. T. Karman, M. Tomza, J. Pérez-Ríos
    Ultracold Chemistry: a testbed for theoretical few-body physics
    Nature Phys. 20, 722 (2024) | pdf
    Review article
  7. S. Finelli, A. Ciamei, B. Restivo, M. Schemmer, M. Inguscio, A. Trenkwalder, K. Zaremba-Kopczyk, M. Gronowski, M. Tomza, M. Zaccanti
    Ultracold LiCr: a new pathway to quantum gases of paramagnetic polar molecules
    PRX Quantum 5, 020358 (2024) | pdf
    Featured in Physics
  8. Z. Wu, S. Walser, V. Podlesnic, M. Isaza-Monsalve, E. Mattivi, G. Mu, R. Nardi, P. Gniewek, M. Tomza, B. Furey, P. Schindler
    Photodissociation spectra of single trapped CaOH+ molecular ions
    J. Chem. Phys. 161, 044304 (2024) | pdf
  9. H. Ladjimi, M. Tomza
    Diatomic molecules of alkali-metal and alkaline-earth-metal atoms: interaction potentials, dipole moments, and polarizabilities
    Phys. Rev. A 109, 052814 (2024) | pdf
  10. K. Zaremba-Kopczyk, M. Tomza, M. Lepers
    Van der Waals coefficients for interactions of dysprosium and erbium atoms with alkali-metal and alkaline-earth-metal atoms
    Phys. Rev. A 109, 012811 (2024) | pdf
  11. H. Ladjimi, M. Tomza
    Chemical reactions of ultracold alkaline-earth-metal diatomic molecules
    Phys. Rev. A 108, L021302 (2023) | pdf
    Letter
  12. J. Gębala, M. Przybytek, M. Gronowski, M. Tomza
    Ab initio potential energy curves, scattering lengths, and rovibrational levels of the He2+ molecular ion in excited electronic states
    Phys. Rev. A 108, 052821 (2023) | pdf
  13. J. Szczepkowski, M. Gronowski, A. Grochola, W. Jastrzebski, M. Tomza, P. Kowalczyk
    Excited electronic states of Sr2: ab initio predictions and experimental observation of the 21Σu+ state
    J. Phys. Chem. A 127, 4473 (2023) | pdf
  14. L. Shirkov, M. Tomza
    Long-range interactions of aromatic molecules with alkali-metal and alkaline-earth-metal atoms
    J. Chem. Phys. 158, 094109 (2023) | pdf
  15. K. Jachymski, M. Gronowski, M. Tomza
    Collisional losses of ultracold molecules due to intermediate complex formation
    Phys. Rev. A 106, L041301 (2022) | pdf
    Letter
  16. M. Suchorowski, A. Dawid, M. Tomza
    Two ultracold highly magnetic atoms in a one-dimensional harmonic trap
    Phys. Rev. A 106, 043324 (2022) | pdf
  17. M. Tomza
    Collision detection with logic
    Nature Phys. 18, 493 (2022) | pdf
    Commentary in News & Views
  18. M. Sroczyńska, A. Dawid, M. Tomza, Z. Idziaszek, T. Calarco, K. Jachymski
    Controlling the dynamics of ultracold polar molecules in optical tweezers
    New J. Phys. 24, 015001 (2022) | pdf
  19. P. Weckesser, F. Thielemann, D. Wiater, A. Wojciechowska, L. Karpa, K. Jachymski, M. Tomza, T. Walker, T. Schaetz
    Observation of Feshbach resonances between a single ion and ultracold atoms
    Nature 600, 429 (2021) | pdf
    Featured on the cover page
  20. M. Tomza
    Interaction potentials, electric moments, polarizabilities, and chemical reactions of YbCu, YbAg, and YbAu molecules
    New J. Phys. 23, 085003 (2021) | pdf
    Focus issue on “Cold and Ultracold Chemistry of Atoms, Ions and Molecules”
  21. K. Zaremba-Kopczyk, M. Tomza
    Van der Waals molecules consisting of a zinc or cadmium atom interacting with an alkali-metal or alkaline-earth-metal atom
    Phys. Rev. A 104, 042816 (2021) | pdf
  22. M. Śmiałkowski, M. Tomza
    Highly polar molecules consisting of a copper or silver atom interacting with an alkali-metal or alkaline-earth-metal atom
    Phys. Rev. A 103, 022802 (2021) | pdf
  23. A. Dawid, M. Tomza
    Magnetic properties and quench dynamics of two interacting ultracold molecules in a trap
    Phys. Chem. Chem. Phys. 22, 28140 (2020) | pdf
    Special issue on “Quantum Computing and Quantum Information Storage”
  24. M. Gronowski, A. M. Koza, M. Tomza
    Ab initio properties of the NaLi molecule in the a3Σ+ electronic state
    Phys. Rev. A 102, 020801(R) (2020) | pdf
    Rapid Communication
  25. W. Zrafi, H. Ladjimi, H. Said, H. Berriche, M. Tomza
    Ab initio electronic structure and prospects for the formation of ultracold calcium–alkali-metal-atom molecular ions
    New J. Phys. 22, 073015 (2020) | pdf
  26. M. Śmiałkowski, T. Korona, M. Tomza
    Ab initio electronic structure of the Sr2+ molecular ion
    J. Phys. B: At. Mol. Opt. Phys. 53, 135303 (2020) | pdf
  27. T. Feldker, H. Fürst, H. Hirzler, N. V. Ewald, M. Mazzanti, D. Wiater, M. Tomza, R. Gerritsma
    Buffer gas cooling of a trapped ion to the quantum regime
    Nature Phys. 16, 413 (2020) | pdf
    Highlighted in Nature Physics News & Views, Nature Research Highlights, and Physics World
  28. M. Tomza, M. Lisaj
    Interactions and charge transfer dynamics of an Al+ ion immersed in ultracold Rb and Sr atoms
    Phys. Rev. A 101, 012705 (2020) | pdf
  29. M. Śmiałkowski, M. Tomza
    Interactions and chemical reactions in ionic alkali-metal and alkaline-earth-metal diatomic AB+ and triatomic A2B+ systems
    Phys. Rev. A 101, 012501 (2020) | pdf
  30. A. D. Dörfler, P. Eberle, D. Koner, M. Tomza, M. Meuwly, S. Willitsch
    Long-range versus short-range effects in cold molecular ion-neutral collisions
    Nature Commun. 10, 5429 (2019) | pdf
  31. M. Tomza, K. Jachymski, R. Gerritsma, A. Negretti, T. Calarco, Z. Idziaszek, P. S. Julienne
    Cold hybrid ion-atom systems
    Rev. Mod. Phys. 91, 035001 (2019) | pdf
    Review article
  32. P. Wójcik, T. Korona, M. Tomza
    Interactions of benzene, naphthalene, and azulene with alkali-metal and alkaline-earth-metal atoms for ultracold studies
    J. Chem. Phys. 150, 234106 (2019) | pdf
    Highlighted as Editor’s Pick and Featured on the cover page
  33. A. Dawid, M. Lewenstein, M. Tomza
    Two interacting ultracold molecules in a one-dimensional harmonic trap
    Phys. Rev. A 97, 063618 (2018) | pdf
    Highlighted as Editors’ Suggestion
  34. T. Schmid, C. Veit, N. Zuber, R. Löw, T. Pfau, M. Tarana, M. Tomza
    Rydberg molecules for ion-atom scattering in the ultracold regime
    Phys. Rev. Lett. 120, 153401 (2018) | pdf
  35. H. Furst, T. Feldker, N. Ewald, J. Joger, M. Tomza, R. Gerritsma
    Dynamics of a single ion spin impurity in a spin-polarized atomic bath
    Phys. Rev. A 98, 012713 (2018) | pdf
  36. J. Joger, H. Furst, N. Ewald, T. Feldker, M. Tomza, R. Gerritsma
    Observation of collisions between cold Li atoms and Yb+ ions
    Phys. Rev. A 96, 030703(R) (2017) | pdf
    Rapid Communication
  37. M. Tomza
    Cold interactions and chemical reactions of linear polyatomic anions with alkali-metal and alkaline-earth-metal atoms
    Phys. Chem. Chem. Phys. 19, 16512 (2017) | pdf
  38. M. Tomza
    Ultracold magnetically tunable interactions without radiative charge transfer losses between Ca+, Sr+, Ba+, and Yb+ ions and Cr atoms
    Phys. Rev. A 92, 062701 (2015) | pdf
  39. M. Tomza
    Energetics and control of ultracold isotope-exchange reactions between heteronuclear dimers in external fields
    Phys. Rev. Lett. 115, 063201 (2015) | pdf
  40. M. Tomza, C. P. Koch, R. Moszynski
    Cold interactions between an Yb+ ion and a Li atom: Prospects for sympathetic cooling, radiative association, and Feshbach resonances
    Phys. Rev. A 91, 042706 (2015) | pdf
  41. M. Tomza
    Ab initio properties of the ground-state polar and paramagnetic europium–alkali-metal-atom and europium–alkaline-earth-metal-atom molecules
    Phys. Rev. A 90, 022514 (2014) | pdf
  42. M. Tomza, K. W. Madison, R. Moszynski, R. Krems
    Chemical reactions of ultracold alkali-metal dimers in the lowest-energy 3Sigma state
    Phys. Rev. A 88, 050701(R) (2013) | pdf
    Rapid Communication
  43. M. Tomza
    Prospects for ultracold polar and magnetic chromium–closed-shell-atom molecules
    Phys. Rev. A 88, 012519 (2013) | pdf
  44. S. Amaran, R. Kosloff, M. Tomza, W. Skomorowski, F. Pawlowski, R. Moszynski, L. Rybak, L. Levin, Z. Amitay, J. M. Berglund, D. M. Reich, C. P. Koch
    Femtosecond two-photon photoassociation of hot magnesium atoms: A quantum dynamical study using thermal random phase wavefunctions
    J. Chem. Phys. 139, 164124 (2013) | pdf
  45. M. Tomza, W. Skomorowski, M. Musial, R. Gonzalez-Ferez, C. P. Koch, R. Moszynski
    Interatomic potentials, electric properties and spectroscopy of the ground and excited states of the Rb2 molecule: ab initio calculations and effect of a non-resonant field
    Mol. Phys. 111, 1781 (2013) | pdf
    Special issue on “Manipulating Molecules via EM Fields”
  46. M. Tomza, M. H. Goerz, M. Musial, R. Moszynski, C. P. Koch
    Optimized production of ultracold ground-state molecules: Stabilization employing potentials with ion-pair character and strong spin-orbit coupling
    Phys. Rev. A 86, 043424 (2012) | pdf
  47. L. Rybak, S. Amaran, L. Levin, M. Tomza, R. Moszynski, R. Kosloff, C. P. Koch, Z. Amitay
    Generating Molecular Rovibrational Coherence by Two-Photon Femtosecond Photoassociation of Thermally Hot Atoms
    Phys. Rev. Lett. 107, 273001 (2011) | pdf
  48. L. Rybak, Z. Amitay, S. Amaran, R. Kosloff, M. Tomza, R. Moszynski, C. P. Koch
    Femtosecond coherent control of thermal photoassociation of magnesium atoms
    Faraday Discuss. 153, 383 (2011) | pdf
  49. M. Tomza, F. Pawlowski, M. Jeziorska, C.P. Koch, R. Moszynski
    Formation of ultracold SrYb molecules in an optical lattice by photoassociation spectroscopy: theoretical prospects
    Phys. Chem. Chem. Phys. 13, 18893 (2011) | pdf
    Special issue on “Physics and chemistry of cold molecules”