Abstract

Learned-memory methods store information in an explicit table and consume it through a separate reader, allowing addressing, storage, and reading to be modified independently. We study whether useful memory can also be generated rather than only retrieved. MemoryAthena uses three pathways: direct Engram retrieval (E), generation from retrieved Engram cues (GE), and generation from causal backbone states without consulting the memory table (GH). Generated memory is conditionally useful: it can complement E in one context but interfere with it in another. MemoryAthena therefore treats E as an anchor and learns when a generated representation should intervene. With the backbone, memory, generators, and readers frozen, a lightweight causal routing head is trained from counterfactual future-token likelihood advantages of GE and GH relative to E. At inference time, an admitted candidate modifies the E residual through bounded interpolation, while rejection recovers the direct pathway exactly. On question answering, MemoryAthena raises the five-task average from 37.65 to 39.28 over the direct pathway of the same checkpoint, while the six-task general-NLP average increases from 76.73 to 79.13. The complete memory-side system contains approximately 201M parameters, excluding the frozen backbone. Further analyses show complementary strengths among E, GE, and GH across tasks and inputs. These results support generated memory as a selective correction to direct retrieval and highlight routing when, which, and how strongly to intervene as the central challenge.

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Cite this article

APA 7

Li, M., Yu, G., Zhang, J., Wang, X., Man, Z., Zhang, H., & Ji, S. (2026). MemoryAthena: Adaptive Routing over Latent and Generated Memories. https://omanscience.com/en/articles/memoryathena-adaptive-routing-over-latent-and-generated-memories

MLA 9

Li, Mingyuan, et al. "MemoryAthena: Adaptive Routing over Latent and Generated Memories." https://omanscience.com/en/articles/memoryathena-adaptive-routing-over-latent-and-generated-memories.

Chicago (author–date)

Li, Mingyuan, Guangsheng Yu, Juyuan Zhang, Xu Wang, Zhibo Man, Haonan Zhang, and Shaoxiong Ji. 2026. "MemoryAthena: Adaptive Routing over Latent and Generated Memories." https://omanscience.com/en/articles/memoryathena-adaptive-routing-over-latent-and-generated-memories.

Harvard

Li, M., Yu, G., Zhang, J., Wang, X., Man, Z., Zhang, H. and Ji, S. (2026) 'MemoryAthena: Adaptive Routing over Latent and Generated Memories', Available at: https://omanscience.com/en/articles/memoryathena-adaptive-routing-over-latent-and-generated-memories.

Vancouver

Li M, Yu G, Zhang J, Wang X, Man Z, Zhang H, et al. MemoryAthena: Adaptive Routing over Latent and Generated Memories. https://omanscience.com/en/articles/memoryathena-adaptive-routing-over-latent-and-generated-memories

IEEE

M. Li, G. Yu, J. Zhang, X. Wang, Z. Man, H. Zhang, and S. Ji, "MemoryAthena: Adaptive Routing over Latent and Generated Memories," https://omanscience.com/en/articles/memoryathena-adaptive-routing-over-latent-and-generated-memories.