2020 Journal Article Search for transient variations of the fine structure constant and dark matter using fiber-linked optical atomic clocksRoberts, Benjamin M, Delva, Pacome, Al-Masoudi, Ali, Amy-Klein, Anne, Baerentsen, Christian, Baynham, Charles, Benkler, Erik, Bilicki, Sŀawomir, Bize, Sebastien, Bowden, William, Calvert, J, Cambier, Valentin, Cantin, Etienne, Curtis, Elizabeth Anne, Dörscher, Sören, Favier, Maxime, Frank, Florian, Gill, Patrick, Godun, R M, Grosche, Gesine, Guo, Changlei, Hees, Aurelien, Hill, Ian Robert, Hobson, Richard, Huntemann, Nils, Kronjaeger, Jochen, Koke, Sebastian, Kuhl, Alexander, Lange, Richard ... Wolf, Peter (2020). Search for transient variations of the fine structure constant and dark matter using fiber-linked optical atomic clocks. New Journal of Physics, 22 (9) 093010, 093010. doi: 10.1088/1367-2630/abaace |
2020 Journal Article Erratum: Calculations of the atomic structure for the low-lying states of actinium [Phys. Rev. A 100 , 022504 (2019)]Dzuba, V. A., Flambaum, V. V. and Roberts, B. M. (2020). Erratum: Calculations of the atomic structure for the low-lying states of actinium [Phys. Rev. A 100 , 022504 (2019)]. Physical Review A, 101 (5) 059901. doi: 10.1103/physreva.101.059901 |
2020 Journal Article Applying the matched-filter technique to the search for dark matter transients with networks of quantum sensorsPanelli, Guglielmo, Roberts, Benjamin M. and Derevianko, Andrei (2020). Applying the matched-filter technique to the search for dark matter transients with networks of quantum sensors. EPJ Quantum Technology, 7 (1) 5. doi: 10.1140/epjqt/s40507-020-00081-9 |
2019 Journal Article Correlation trends in the hyperfine structure for Rb, Cs, and Fr, and high-accuracy predictions for hyperfine constantsGrunefeld, S. J., Roberts, B. M. and Ginges, J. S. M. (2019). Correlation trends in the hyperfine structure for Rb, Cs, and Fr, and high-accuracy predictions for hyperfine constants. Physical Review A, 100 (4) 042506, 042506. doi: 10.1103/physreva.100.042506 |
2019 Journal Article Calculations of the atomic structure for the low-lying states of actiniumDzuba, V. A., Flambaum, V. V. and Roberts, B. M. (2019). Calculations of the atomic structure for the low-lying states of actinium. Physical Review A, 100 (2) 022504. doi: 10.1103/physreva.100.022504 |
2019 Conference Publication The damned experiment: dark matter from non equal delaysSavalle, E., Roberts, Benjamin M., Frank, Florian, Pottie, Paul-Eric, McAllister, Ben T., Dailey, Conner B., Derevianko, Andrei and Wolf, P. (2019). The damned experiment: dark matter from non equal delays. Rencontres de Moriond, La Thuile, Valle d'Aosta, Italy, 23-30 March 2019. La Thuile, Valle d'Aosta, Italy: ARISF. |
2019 Conference Publication Violation of the equivalence principle from light scalar fields: From dark matter candidates to scalarized black holesHees, A., Minazzoli, O., Savalle, E., Stadnik, Y. V., Wolf, P. and Roberts, B. (2019). Violation of the equivalence principle from light scalar fields: From dark matter candidates to scalarized black holes. Rencontres de Moriond, La Thuile, Valle d'Aosta, Italy, 23-30 March 2019. La Thuile, Valle d'Aosta, Italy: ARISF. |
2019 Conference Publication DAMNED - DArk Matter from Non Equal Delays New test of the fundamental constants variationSavalle, E., Roberts, Ben R., Frank, Florian, Pottie, Paul-Eric, McAllister, Ben T., Dailey, Conner B., Derevianko, Andrei and Wolf, P. (2019). DAMNED - DArk Matter from Non Equal Delays New test of the fundamental constants variation. Joint Conference of the IEEE International Frequency Control Symposium / Conference of the European Frequency and Time Forum (EFTF/IFC), Orlando, FL United States, 14-18 April 2019. Piscataway, NJ, United States: Institute of Electrical and Electronics Engineers. doi: 10.1109/FCS.2019.8856056 |
2018 Journal Article Search for transient ultralight dark matter signatures with networks of precision measurement devices using a Bayesian statistics methodRoberts, B. M., Blewitt, G., Dailey, C. and Derevianko, A. (2018). Search for transient ultralight dark matter signatures with networks of precision measurement devices using a Bayesian statistics method. Physical Review D, 97 (8) 083009. doi: 10.1103/physrevd.97.083009 |
2017 Journal Article Comment on "Axion induced oscillating electric dipole moments"Flambaum, V. V., Roberts, B. M. and Stadnik, Y. V. (2017). Comment on "Axion induced oscillating electric dipole moments". Physical Review D, 95 (5) 058701. doi: 10.1103/PhysRevD.95.058701 |
2016 Journal Article Comment on "Ionization of Atoms by Slow Heavy Particles, Including Dark Matter" ReplyRoberts, B. M., Flambaum, V. V. and Gribakin, G. F. (2016). Comment on "Ionization of Atoms by Slow Heavy Particles, Including Dark Matter" Reply. Physical Review Letters, 117 (8) 089302. doi: 10.1103/physrevlett.117.089302 |
2016 Journal Article Dark matter scattering on electrons: Accurate calculations of atomic excitations and implications for the DAMA signalRoberts, B. M., Dzuba, V. A., Flambaum, V. V., Pospelov, M. and Stadnik, Y. V. (2016). Dark matter scattering on electrons: Accurate calculations of atomic excitations and implications for the DAMA signal. Physical Review D, 93 (11) 115037. doi: 10.1103/physrevd.93.115037 |
2015 Conference Publication Searching for axion dark matter in atoms: oscillating electric dipole moments and spin-precession effectsRoberts, Benjamin M., Stadnik, Yevgeny V., Flambaum, Victor V. and Dzuba, Vladimir A. (2015). Searching for axion dark matter in atoms: oscillating electric dipole moments and spin-precession effects. Patras Workshop on Axions, WIMPs and WISPs, Zaragoza, Spain, 22-26 June 2015. Hamburg, Germany: Verlag Deutsches Elektronen-Synchrotron. doi: 10.3204/DESY-PROC-2015-02/robertsbenjaminaxions |
2015 Journal Article Parity and Time-Reversal Violation in Atomic SystemsRoberts, B. M., Dzuba, V. A. and Flambaum, V. V. (2015). Parity and Time-Reversal Violation in Atomic Systems. Annual Review of Nuclear and Particle Science, Vol 65, 65 (1), 63-86. doi: 10.1146/annurev-nucl-102014-022331 |
2015 Conference Publication New atomic methods for dark matter detectionRoberts, B. M., Stadnik, Y. V., Dzuba, V. A., Flambaum, V. V., Leefer, N. and Budker, D. (2015). New atomic methods for dark matter detection. 29th International Conference on Photonic, Electronic and Atomic Collisions, ICPEAC 2015, Toledo, Spain, 22-28 July 2015. Bristol, United Kingdom: Institute of Physics Publishing. doi: 10.1088/1742-6596/635/2/022033 |
2015 Conference Publication Atomic ionization by dark matter particlesFlambaum, V. V., Dzuba, V. A., Pospelov, M., Derevianko, A. and Roberts, B. (2015). Atomic ionization by dark matter particles. 29th International Conference on Photonic, Electronic, and Atomic Collisions (ICPEAC), Toledo, Spain, 22-28 July 2015. Bristol, United Kingdom: Institute of Physics Publishing. doi: 10.1088/1742-6596/635/2/022012 |
2015 Conference Publication Searching for scalar dark matter in atoms and astrophysical phenomena: variation of fundamental constantsStadnik, Yevgeny V., Roberts, Benjamin M., Flambaum, Victor V. and Dzuba, Vladimir A. (2015). Searching for scalar dark matter in atoms and astrophysical phenomena: variation of fundamental constants. Patras Workshop on Axions, WIMPs and WISPs, Zaragoza, Spain, 22-26 June 2015. Hamburg, Germany: Verlag Deutsches Elektronen-Synchrotron. doi: 10.3204/DESY-PROC-2015-02/robertsbenjamin |
2014 Journal Article Parity-violating interactions of cosmic fields with atoms, molecules, and nuclei: Concepts and calculations for laboratory searches and extracting limitsRoberts, B. M., Stadnik, Y. V., Dzuba, V. A., Flambaum, V. V., Leefer, N. and Budker, D. (2014). Parity-violating interactions of cosmic fields with atoms, molecules, and nuclei: Concepts and calculations for laboratory searches and extracting limits. Physical Review D, 90 (9) 096005. doi: 10.1103/physrevd.90.096005 |
2014 Journal Article Tests of CPT and Lorentz symmetry from muon anomalous magnetic dipole momentStadnik, Y. V., Roberts, B. M. and Flambaum, V. V. (2014). Tests of CPT and Lorentz symmetry from muon anomalous magnetic dipole moment. Physical Review D, 90 (4) 045035. doi: 10.1103/physrevd.90.045035 |
2014 Journal Article Strongly enhanced atomic parity violation due to close levels of opposite parityRoberts, B. M., Dzuba, V. A. and Flambaum, V. V. (2014). Strongly enhanced atomic parity violation due to close levels of opposite parity. Physical Review A, 89 (4) 042509. doi: 10.1103/physreva.89.042509 |