2026-07-072026-07-07http://salesiana.dossiersoluciones.com/handle/123456789/229187Dissipation is ubiquitous in quantum systems, and its interplay with fluctuations is critical to maintaining quantum coherence. We experimentally investigate the dissipation dynamics in single-walled carbon nanotubes coupled to superconductors. The voltage-current characteristics display gate-tunable hysteresis, with sizes that perfectly correlate with the normal state resistance RN, indicating the junction undergoes a periodic modulation between underdamped and overdamped regimes. Surprisingly, when a device's Fermi-level is tuned through a local conductance minimum, we observe a gate-controlled transition from superconducting-like to insulating-like states, with a "critical" R_N value of about 8-20 kohm.Figures revised to improve clarity. Accepted for publication by Physical Review LettersSuperconductivityMesoscale and Nanoscale PhysicsGate Tunable Dissipation and "Superconductor-Insulator" Transition in Carbon Nanotube Josephson Transistorstext