Funding Information: IB is supported by an Alexander von Humboldt postdoctoral fellowship.We consider how the trajectory of an interstellar precursor mission would be affected by the gravity of the Sun in Newtonian and Milgromian dynamics (MOND). The solar gravity is ≈50 per cent stronger in MOND beyond a distance of ≈7000 astronomical units, the Sun fs MOND radius. A spacecraft travelling at 0.01 of light speed reaches this distance after 11.1 years. We show that the extra gravity in MOND causes an anomalous deceleration that reduces its radial velocity by ≈3 cms-1 and the two-way light travel time from the inner Solar System by ≈0.1 s after 20 years. A distinctive signature of MOND is that the gravity from the Sun is not directly towards ...
IB was supported by Science and Technology Facilities Council studentship 1506672. The work of DOR w...
We present a new test of modified Newtonian dynamics (MOND) on galactic scales, based on the escape ...
We compare orbits in a thin axisymmetric disc potential in Modified Newtonian Dynamics (MOND) with t...
We consider how the trajectory of an interstellar precursor mission would be affected by the gravity...
Funding: IB was partially supported by Science and Technology Facilities Council studentship 1506672...
The works in this portfolio test the hypothesis that it is not possible to extrapolate the Newtonian...
Funding Information: IB is supported by an Alexander von Humboldt postdoctoral fellowship.The wide b...
The works in this portfolio test the hypothesis that it is not possible to extrapolate the Newtonia...
IB is supported by Science and Technology Facilities Council grant ST/V000861/1, which also partiall...
The Modified Newtonian Dynamics (MOND) paradigm generically predicts that the external gravitational...
Astronomical observations reveal a major deficiency in our understanding of physics $-$ the detectab...
Modified Newtonian dynamics (MOND) is an empirical theory originally proposed to explain the rotatio...
Funding Information: IB is supported by an Alexander von Humboldt postdoctoral research fellowship.T...
I.B. and A.H.Z. are Alexander von Humboldt Fellows. H.H. is a DAAD visiting scholar. B.J. and J.D. a...
8 pages, two figures, to appear in the proceedings of the "46th Rencontres de Moriond and GPhyS Coll...
IB was supported by Science and Technology Facilities Council studentship 1506672. The work of DOR w...
We present a new test of modified Newtonian dynamics (MOND) on galactic scales, based on the escape ...
We compare orbits in a thin axisymmetric disc potential in Modified Newtonian Dynamics (MOND) with t...
We consider how the trajectory of an interstellar precursor mission would be affected by the gravity...
Funding: IB was partially supported by Science and Technology Facilities Council studentship 1506672...
The works in this portfolio test the hypothesis that it is not possible to extrapolate the Newtonian...
Funding Information: IB is supported by an Alexander von Humboldt postdoctoral fellowship.The wide b...
The works in this portfolio test the hypothesis that it is not possible to extrapolate the Newtonia...
IB is supported by Science and Technology Facilities Council grant ST/V000861/1, which also partiall...
The Modified Newtonian Dynamics (MOND) paradigm generically predicts that the external gravitational...
Astronomical observations reveal a major deficiency in our understanding of physics $-$ the detectab...
Modified Newtonian dynamics (MOND) is an empirical theory originally proposed to explain the rotatio...
Funding Information: IB is supported by an Alexander von Humboldt postdoctoral research fellowship.T...
I.B. and A.H.Z. are Alexander von Humboldt Fellows. H.H. is a DAAD visiting scholar. B.J. and J.D. a...
8 pages, two figures, to appear in the proceedings of the "46th Rencontres de Moriond and GPhyS Coll...
IB was supported by Science and Technology Facilities Council studentship 1506672. The work of DOR w...
We present a new test of modified Newtonian dynamics (MOND) on galactic scales, based on the escape ...
We compare orbits in a thin axisymmetric disc potential in Modified Newtonian Dynamics (MOND) with t...