We present a resonantly diode pumped Tm:YAG laser, operating at 2036 nm, wavelength-stabilized using a volume Bragg grating. This laser takes advantage of resonant diode pumping at 1.69 \({\upmu }\) m to achieve efficient emission in the high atmospheric transmission spectral region near 2 \({\upmu }\) m. Despite operation on the wing of the emission spectrum, an output power of up to 4.6 W was obtained with a slope efficiency of 49%. In a Q-switched regime, output pulses with an energy of 0.8 mJ and a duration of 360 ns were achieved with performance constrained by the chosen components. The results highlight the potential of compact resonantly diode-pumped 2 \({\upmu }\) m Tm \(^{3+}\) laser systems for applications requiring efficient wavelength-specific sources, such as LIDAR and atmospheric sensing.