Evaluating Synthetic Activations composed of SAE Latents in GPT-2
Paper accepted to Attributing Model Behavior at Scale Workshop at NeurIPS 2024
Sparse Autoencoders (SAEs) are commonly employed in mechanistic interpretability to decompose the residual stream into monosemantic SAE latents. Recent work demonstrates that perturbing a model's activations at an early layer results in a step-function-like change in the model's final layer activations. Furthermore, the model's sensitivity to this perturbation differs between model-generated (real) activations and random activations. In our study, we assess model sensitivity in order to compare real activations to synthetic activations composed of SAE latents. Our findings indicate that synthetic activations closely resemble real activations when we control for the sparsity and cosine similarity of the constituent SAE latents. This suggests that real activations cannot be explained by a simple "bag of SAE latents" lacking internal structure, and instead suggests that SAE latents possess significant geometric and statistical properties. Notably, we observe that our synthetic activations exhibit less pronounced activation plateaus compared to those typically surrounding real activations.
Programme
LASR
LASR Labs is a technical AI safety research programme focused on reducing the risk of loss of control to advanced AI.
Participants work in teams of three to four, supervised by an experienced AI safety researcher, to write an academic-style paper and accompanying blog post. Participation is full-time and in-person from the London Initiative for Safe AI alongside other AI safety researchers. The programme is designed to “learn by doing”; taking a research project from proposal all the way to publication.